WO2024037412A1 - 一种被用于无线通信的节点中的方法和装置 - Google Patents

一种被用于无线通信的节点中的方法和装置 Download PDF

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Publication number
WO2024037412A1
WO2024037412A1 PCT/CN2023/112233 CN2023112233W WO2024037412A1 WO 2024037412 A1 WO2024037412 A1 WO 2024037412A1 CN 2023112233 W CN2023112233 W CN 2023112233W WO 2024037412 A1 WO2024037412 A1 WO 2024037412A1
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Prior art keywords
resource
signaling
index set
resources
csi
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PCT/CN2023/112233
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English (en)
French (fr)
Inventor
武露
宋姝林
张晓博
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上海朗帛通信技术有限公司
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Publication of WO2024037412A1 publication Critical patent/WO2024037412A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path

Definitions

  • the present application relates to transmission methods and devices in wireless communication systems, in particular to wireless signal transmission methods and devices in wireless communication systems supporting cellular networks.
  • Network energy saving is one of the SI (Study Item, research work), in which the spatial element of the base station (such as the antenna element) ), antenna panel (antenna panel), antenna port (antenna port), logical (logical) antenna port, transmit radio frequency channel (TxRU, Transmit Radio Unit), transmit and receive node (TRxP, Transmission Reception Point), etc.) adaptation (Adaptation) is a research direction in energy saving.
  • CSI Channel State Information
  • this application discloses a solution. It should be noted that in the description of this application, only uplink and downlink are used as a typical application scenario; this application is also applicable to other scenarios facing similar problems (such as sidelink, Internet of Vehicles, etc.). Similar technical effects can also be achieved. In addition, adopting a unified solution for different scenarios (including but not limited to multi-carrier scenarios) can also help reduce hardware complexity and cost. In the case of no conflict, the embodiments and features in the embodiments of the first node device of the present application can be applied to the second node device, and vice versa. In particular, for the explanation of terms (Terminology), nouns, functions, and variables in this application (if not otherwise specified), you may refer to the definitions in the 3GPP standard protocols TS36 series, TS37 series, and TS38 series.
  • This application discloses a method used in a first node of wireless communication, which is characterized by including:
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting The configuration includes a first resource configuration, the first resource configuration is used to configure N RS resources, the N RS resources respectively correspond to the N resource indication values, and the first RS resource corresponds to the first resource indication value.
  • the value, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine The first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • the problems to be solved by this application include: calculation of CSI reporting amount.
  • the calculation of the first reported amount is based on the first RS resource.
  • the value of the first reported amount is default.
  • the calculation of the first reported amount is based on the second RS resource; the second RS The resource corresponds to the value indicated by the first resource.
  • the first CSI reporting configuration is used to configure two RS resource sets for channel measurement, and the first RS resource and the second RS resource respectively belong to the Two RS resource sets used for channel measurement.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the quasi-co-location information of the second RS resource is different from the quasi-co-location information of the first RS resource.
  • the quasi-co-location information of the first RS resource and the quasi-co-location information of the second RS resource belong to the configuration information of the first RS resource; or, the third The quasi-co-location information of the two RS resources depends on the first index set.
  • This application discloses a method used in a second node of wireless communication, which is characterized by including:
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting The configuration includes a first resource configuration, the first resource configuration is used to configure N RS resources, the N RS resources respectively correspond to the N resource indication values, and the first RS resource corresponds to the first resource indication value.
  • the value, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine The first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • the calculation of the first reported amount is based on the first RS resource.
  • the value of the first reported amount is default.
  • the calculation of the first reported amount is based on the second RS resource; the second RS The resource corresponds to the value indicated by the first resource.
  • the first CSI reporting configuration is used to configure two RS resource sets for channel measurement, and the first RS resource and the second RS resource respectively belong to the Two RS resource sets used for channel measurement.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the quasi-co-location information of the second RS resource is different from the quasi-co-location information of the first RS resource.
  • the quasi-co-location information of the first RS resource and the quasi-co-location information of the second RS resource belong to the configuration information of the first RS resource; or, the third The quasi-co-location information of the two RS resources depends on the first index set.
  • This application discloses a first node device used for wireless communication, which is characterized in that it includes:
  • the first receiver receives the first CSI reported configuration; receives the first signaling;
  • the first transmitter sends the first CSI
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting The configuration includes a first resource configuration, the first resource configuration is used to configure N RS resources, the N RS resources respectively correspond to the N resource indication values, and the first RS resource corresponds to the first resource indication value.
  • the value, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine The first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • This application discloses a second node device used for wireless communication, which is characterized in that it includes:
  • the second transmitter sends the first CSI reporting configuration; receives the first signaling;
  • the second receiver receives the first CSI
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting The configuration includes a first resource configuration, which is used to configure N RS resources, the N RS resources respectively correspond to the N resource indication values, the first RS resource corresponds to the value of the first resource indication, and the first RS resource is one of the N RS resources. 1.
  • the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reporting amount is based on the first
  • the RS resource is conditionally dependent on whether the first RS resource is associated with the first index set.
  • this application has the following advantages:
  • the calculation of the CSI report amount can be adjusted faster to quickly adapt to changes in the environment and scenarios.
  • Figure 1 shows a flow chart of receiving the first CSI reporting configuration and first signaling and sending the first CSI according to an embodiment of the present application
  • Figure 2 shows a schematic diagram of a network architecture according to an embodiment of the present application
  • Figure 3 shows a schematic diagram of an embodiment of a wireless protocol architecture of a user plane and a control plane according to an embodiment of the present application
  • Figure 4 shows a schematic diagram of a first communication device and a second communication device according to an embodiment of the present application
  • Figure 5 shows a flow chart of wireless transmission according to an embodiment of the present application
  • Figure 6 shows a schematic diagram of the first reported amount according to an embodiment of the present application.
  • Figure 7 shows a schematic diagram of the first reported amount according to another embodiment of the present application.
  • Figure 8 shows a schematic diagram of the first reported amount according to another embodiment of the present application.
  • Figure 9 shows a schematic diagram of a second RS resource according to an embodiment of the present application.
  • Figure 10 shows a schematic diagram of a second RS resource according to another embodiment of the present application.
  • Figure 11 shows a schematic diagram of quasi-co-location information of the second RS resource according to an embodiment of the present application
  • Figure 12 shows a schematic diagram of quasi-co-location information of the second RS resource according to another embodiment of the present application.
  • Figure 13 shows a structural block diagram of a processing device used in a first node device according to an embodiment of the present application
  • Figure 14 shows a structural block diagram of a processing device for a device in a second node according to an embodiment of the present application.
  • Embodiment 1 illustrates a flow chart of receiving the first CSI reporting configuration and first signaling and sending the first CSI according to an embodiment of the present application, as shown in FIG. 1 .
  • the first node 100 shown in Figure 1 receives the first CSI reporting configuration in step 101; receives the first signaling in step 102; and sends the first CSI in step 103.
  • Each block represents a step.
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration.
  • the first resource configuration is used to configure N RS resources.
  • the N RS resources respectively correspond to the N resource indication values.
  • the first RS resource corresponds to the first RS resource.
  • the value of a resource indication, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • the first CSI (Channel State Information, channel state information) reporting configuration includes one or more RRC IE (Information Element, information element).
  • RRC IE Information Element, information element
  • the first CSI reporting configuration includes an RRC IE.
  • the first CSI reporting configuration includes an RRC IE
  • the name of the first CSI reporting configuration includes CSI-ReportConfig.
  • the first CSI reporting configuration includes an RRC IE
  • the name of the first CSI reporting configuration includes CSI
  • the first CSI reporting configuration includes RRC IE CSI-ReportConfig.
  • the first CSI reporting configuration includes two fields for channel measurement resource configuration, and the first resource configuration is one of the two fields for channel measurement resource configuration.
  • the first CSI reporting configuration includes two domains whose names include resourcesForChannelMeasurement, and the first resource configuration is one of the two domains whose names include resourcesForChannelMeasurement.
  • the first resource configuration includes RRC IE CSI-ResourceConfig.
  • the configuration information of an RS resource includes at least occupied time-frequency resources and quasi co-location (QCL) information.
  • QCL quasi co-location
  • the configuration information of an RS resource at least includes occupied time-frequency resources or the occupied time-frequency resources in quasi co-location (QCL) information.
  • QCL quasi co-location
  • the configuration information of a CSI-RS resource includes at least the occupied time-frequency resources and quasi co-location (QCL) information.
  • QCL quasi co-location
  • the first CSI reporting configuration is also used to configure at least one of RS (Reference Signal, reference signal) resources for interference measurement or the reporting amount of the first CSI.
  • RS Reference Signal, reference signal
  • the first CSI reporting configuration is also used to configure RS resources for interference measurement.
  • the first CSI reporting configuration is also used to configure a report quantity (report quantity) included in the first CSI, and the report quantity included in the first CSI at least includes the first resource Instructions and the first reported amount.
  • the first resource configuration includes a partial field in an RRC IE.
  • the first resource configuration includes a resourcesForChannelMeasurement field in an RRC IE.
  • the first resource configuration includes the resourcesForChannelMeasurement field in the RRC IE CSI-ReportConfig.
  • the first resource configuration includes an index of each RS resource in the N RS resources.
  • the first resource configuration includes configuration information of each RS resource in the N RS resources.
  • the N RS resources are used for channel measurement.
  • the N RS resources are used for at least channel measurement in channel measurement or interference measurement.
  • each RS resource among the N RS resources is a CSI-RS (Channel Status Information Reference Signal) resource
  • the first resource indication is a CSI-RS resource indication (CSI-RS resource indicator (CRI).
  • each RS resource among the N RS resources is an SS (Synchronisation Signal)/PBCH (Physical Broadcast CHannel) block resource
  • the first resource indication is an SS/PBCH block resource indication.
  • SS/PBCH Block Resource indicator,SSBRI SS/PBCH Block Resource indicator
  • any RS resource CSI-RS resource or SS/PBCH block resource among the N RS resources, the first resource indicator is a CSI-RS resource indicator (CSI-RS resource indicator, CRI) or SS/PBCH Block Resource indicator (SS/PBCH Block Resource indicator, SSBRI).
  • CSI-RS resource indicator CRI
  • SS/PBCH Block Resource indicator SS/PBCH Block Resource indicator
  • the first reported quantity is PMI (Precoding Matrix Indicator, precoding matrix indicator), CQI (Channel Quality Indicator, channel quality indicator), RI (Rank Indicator, rank indicator), L1-RSRP (Layer 1 -Reference Signal received power, one of Layer 1-Reference Signal Received Power) or L1-SINR (Layer 1-Signal to Interference and Noise Ratio, Layer 1-Signal to Interference and Noise Ratio).
  • PMI Precoding Matrix Indicator, precoding matrix indicator
  • CQI Channel Quality Indicator, channel quality indicator
  • RI Rank Indicator, rank indicator
  • L1-RSRP Layer 1 -Reference Signal received power, one of Layer 1-Reference Signal Received Power
  • L1-SINR Layer 1-Signal to Interference and Noise Ratio, Layer 1-Signal to Interference and Noise Ratio
  • the first CSI only includes the first resource indication and the first reported amount.
  • the first CSI further includes the first resource indication and the reporting amount other than the first reporting amount.
  • the first resource indication and the reporting amount other than the first reporting amount are The quantities are PMI (Precoding Matrix Indicator, precoding matrix indicator), CQI (Channel Quality Indicator, channel quality indicator), RI (Rank Indicator, rank indicator), L1-RSRP (Layer 1-Reference Signal received power, layer 1-reference Signal received power) or L1-SINR (Layer 1-Signal to Interference and Noise Ratio, Layer 1-Signal to Interference and Noise Ratio), whichever is different from the first reported quantity.
  • PMI Precoding Matrix Indicator, precoding matrix indicator
  • CQI Channel Quality Indicator, channel quality indicator
  • RI Rank Indicator, rank indicator
  • L1-RSRP Layer 1-Reference Signal received power, layer 1-reference Signal received power
  • L1-SINR Layer 1-Signal to Interference and Noise Ratio, Layer 1-Signal to Interference and Noise Rati
  • the first CSI includes CRI, RI, PMI and CQI
  • the first resource indication is CRI
  • the first reported amount is one of RI, PMI or CQI.
  • the first CSI includes CRI, RI and PMI
  • the first resource indication is CRI
  • the first reported amount is RI or PMI.
  • the first CSI includes CRI, RI and CQI
  • the first resource indication is CRI
  • the first reported amount is RI or CQI.
  • the first CSI includes CRI and L1-RSRP
  • the first resource indication is CRI
  • the first reported amount is L1-RSRP
  • the first CSI includes SSBRI and L1-RSRP, the first resource indication is SSBRI, and the first reported amount is L1-RSRP.
  • the first CSI includes CRI and L1-SINR
  • the first resource indication is CRI
  • the first reported amount is L1-SINR
  • the first CSI includes SSBRI and L1-SINR
  • the first resource indication is SSBRI
  • the first reported amount is L1-SINR
  • the first resource indication includes a first bit sequence
  • the value range of the first bit sequence includes the N resource indication values
  • the N resource indication values are respectively N groups of bit values of the first bit sequence.
  • the N resource indication values are respectively N groups of bit values.
  • the N resource indication values are N non-negative integers respectively.
  • the N resource indication values are N positive integers respectively.
  • the N resource indication values are 0, 1,..., N-1 respectively.
  • the N resource indication values are 1, 2,...,N respectively.
  • Embodiment 2 illustrates a schematic diagram of a network architecture according to an embodiment of the present application, as shown in Figure 2.
  • FIG. 2 illustrates the network architecture 200 of LTE (Long-Term Evolution, long-term evolution), LTE-A (Long-Term Evolution Advanced, enhanced long-term evolution) and future 5G systems.
  • the network architecture 200 of LTE, LTE-A and future 5G systems is called EPS (Evolved Packet System) 200.
  • the 5GNR or LTE network architecture 200 can be called 5GS (5G System)/EPS (Evolved Packet System). system) 200 or some other suitable term.
  • 5GS/EPS 200 may include one or more UE (User Equipment) 201, a UE 241 that communicates with the UE 201 on a side link, NG-RAN (Next Generation Radio Access Network) 202, 5GC (5G CoreNetwork (5G Core Network)/EPC (Evolved Packet Core) 210, HSS (Home Subscriber Server)/UDM (Unified Data Management) 220 and Internet Services 230.
  • 5GS/EPS200 Interconnection with other access networks is possible, but these entities/interfaces are not shown for simplicity.
  • 5GS/EPS200 provides packet switched services, however those skilled in the art will readily appreciate that the various concepts presented throughout this application can be extended to networks providing circuit switched services.
  • NG-RAN 202 includes NR (New Radio) Node B (gNB) 203 and other gNBs 204.
  • gNB 203 provides user and control plane protocol termination towards UE 201.
  • gNB 203 may connect to other gNBs 204 via the Xn interface (eg, backhaul).
  • the gNB 203 may also be called a base station, base transceiver station, radio base station, radio transceiver, transceiver function, Basic Service Set (BSS), Extended Service Set (ESS), TRP (Transmit Receive Point) or some other suitable terminology.
  • gNB203 provides UE201 with an access point to 5GC/EPC210.
  • Examples of UE 201 include cellular phones, smart phones, Session Initiation Protocol (SIP) phones, laptop computers, personal digital assistants (PDAs), satellite radios, global positioning systems, multimedia devices, video devices, digital audio players ( For example, MP3 players), cameras, game consoles, drones, aircraft, narrowband physical network devices, machine type communications devices, land vehicles, cars, wearable devices, or any other similarly functional device.
  • UE 201 may also refer to UE 201 as a mobile station, subscriber station, mobile unit, subscriber unit, wireless unit, remote unit, mobile device, wireless device, wireless communication device, remote device, mobile subscriber station, access terminal, Mobile terminal, wireless terminal, remote terminal, handset, user agent, mobile client, client or some other suitable term.
  • 5GC/EPC210 includes MME (Mobility Management Entity, mobility management entity)/AMF (Authentication Management Field, authentication management domain)/SMF (Session Management Function, session management function) 211.
  • MME/AMF/SMF214 S-GW (Service Gateway, Service Gateway)/UPF (User Plane Function, User Plane Function) 212 and P-GW (Packet Date Network Gateway, Packet Data Network Gateway)/UPF213.
  • MME/AMF/SMF211 is the control node that handles signaling between UE201 and 5GC/EPC210. Basically MME/AMF/SMF211 provides bearer and connection management.
  • Internet Protocol Internet Protocol
  • All user IP Internet Protocol, Internet Protocol
  • S-GW/UPF212 transmits, and S-GW/UPF212 itself is connected to P-GW/UPF213.
  • P-GW provides UE IP address allocation and other functions.
  • P-GW/UPF 213 is connected to Internet service 230.
  • Internet services 230 include Internet protocol services corresponding to operators, which may specifically include Internet, intranet, IMS (IP Multimedia Subsystem, IP Multimedia Subsystem) and packet switching (Packet switching) services.
  • the first node in this application includes the UE201.
  • the first node in this application includes the UE241.
  • the second node in this application includes the gNB203.
  • Embodiment 3 illustrates a schematic diagram of an embodiment of the wireless protocol architecture of the user plane and control plane according to an embodiment of the present application, as shown in FIG. 3 .
  • Embodiment 3 shows a schematic diagram of an embodiment of a wireless protocol architecture of a user plane and a control plane according to the present application, as shown in FIG. 3 .
  • Figure 3 is a schematic diagram illustrating an embodiment of a radio protocol architecture for user plane 350 and control plane 300
  • Figure 3 shows with three layers for a first communication node device (UE, gNB or RSU in V2X) and a second Radio protocol architecture of the control plane 300 between communication node devices (gNB, UE or RSU in V2X), or between two UEs: Layer 1, Layer 2 and Layer 3.
  • Layer 1 (L1 layer) is the lowest layer and implements various PHY (physical layer) signal processing functions. The L1 layer will be called PHY301 in this article.
  • Layer 2 (L2 layer) 305 is above the PHY 301 and is responsible for the link between the first communication node device and the second communication node device, or between two UEs.
  • L2 layer 305 includes MAC (Medium Access Control, media access control) sublayer 302, RLC (Radio Link Control, wireless link layer control protocol) sublayer 303 and PDCP (Packet Data Convergence Protocol, packet data convergence protocol) sublayer 304. These sub-layers terminate at the second communication node device.
  • PDCP sublayer 304 provides multiplexing between different radio bearers and logical channels. The PDCP sublayer 304 also provides security by encrypting data packets, and provides handoff support for a first communication node device between second communication node devices.
  • the RLC sublayer 303 provides segmentation and reassembly of upper layer data packets, retransmission of lost data packets, and reordering of data packets to compensate for out-of-order reception due to HARQ.
  • MAC sublayer 302 provides multiplexing between logical and transport channels. The MAC sublayer 302 is also responsible for allocating various radio resources (eg, resource blocks) in a cell among first communication node devices. MAC sublayer 302 is also responsible for HARQ operations.
  • the RRC (Radio Resource Control, radio resource control) sublayer 306 in layer 3 (L3 layer) in the control plane 300 is responsible for obtaining radio resources (ie, radio bearers) and using the second communication node device and the first communication node device.
  • the radio protocol architecture of the user plane 350 includes layer 1 (L1 layer) and layer 2 (L2 layer).
  • the PDCP sublayer 354 in the layer 355, the RLC sublayer 353 in the L2 layer 355, and the MAC sublayer 352 in the L2 layer 355 are generally the same as the corresponding layers and sublayers in the control plane 300, but the PDCP sublayer 354 is also Provides header compression for upper layer packets to reduce radio transmission overhead.
  • the L2 layer 355 in the user plane 350 also includes the SDAP (Service Data Adaptation Protocol, Service Data Adaptation Protocol) sublayer 356.
  • the SDAP sublayer 356 is responsible for the mapping between QoS flows and data radio bearers (DRB, Data Radio Bearer). , to support business diversity.
  • the first communication node device may have several upper layers above the L2 layer 355, including a network layer (eg, IP layer) terminating at the P-GW on the network side and another terminating at the connection.
  • the application layer at one end (e.g., remote UE, server, etc.).
  • the wireless protocol architecture in Figure 3 is applicable to the first node in this application.
  • the wireless protocol architecture in Figure 3 is applicable to the second node in this application.
  • the first signaling is generated in the PHY301 or the PHY351.
  • the first CSI reporting configuration is generated in the RRC sublayer 306.
  • the first signaling is generated in the MAC sublayer 302.
  • the first CSI is generated in the PHY301 or the PHY351.
  • Embodiment 4 illustrates a schematic diagram of a first communication device and a second communication device according to an embodiment of the present application, as shown in FIG. 4 .
  • Figure 4 is a block diagram of a first communication device 410 and a second communication device 450 communicating with each other in the access network.
  • the first communication device 410 includes a controller/processor 475, a memory 476, a receive processor 470, a transmit processor 416, a multi-antenna receive processor 472, a multi-antenna transmit processor 471, a transmitter/receiver 418 and an antenna 420.
  • the second communication device 450 includes a controller/processor 459, a memory 460, a data source 467, a transmit processor 468, a receive processor 456, multi-antenna transmit processor 457, multi-antenna receive processor 458, transmitter/receiver 454 and antenna 452.
  • Controller/processor 475 implements the functionality of the L2 layer.
  • the controller/processor 475 provides header compression, encryption, packet segmentation and reordering, multiplexing between logical and transport channels, and control of the second communication device 450 based on various priority metrics. Radio resource allocation.
  • the controller/processor 475 is also responsible for HARQ operation, retransmission of lost packets, and signaling to the second communications device 450 .
  • Transmit processor 416 and multi-antenna transmit processor 471 implement various signal processing functions for the L1 layer (ie, physical layer).
  • the transmit processor 416 implements encoding and interleaving to facilitate forward error correction (FEC) at the second communications device 450, as well as based on various modulation schemes (e.g., binary phase shift keying (BPSK), quadrature phase shift keying (QPSK), M Phase Shift Keying (M-PSK), M Quadrature Amplitude Modulation (M-QAM)) constellation mapping.
  • FEC forward error correction
  • the multi-antenna transmit processor 471 performs digital spatial precoding on the coded and modulated symbols, including codebook-based precoding and non-codebook-based precoding, and beamforming processing to generate one or more parallel streams.
  • Transmit processor 416 maps each parallel stream to a subcarrier, multiplexes the modulated symbols with a reference signal (eg, a pilot) in the time and/or frequency domain, and then uses an inverse fast Fourier transform (IFFT ) to generate a physical channel carrying a stream of time-domain multi-carrier symbols. Then the multi-antenna transmit processor 471 performs transmit analog precoding/beamforming operations on the time domain multi-carrier symbol stream. Each transmitter 418 converts the baseband multi-carrier symbol stream provided by the multi-antenna transmit processor 471 into a radio frequency stream, which is then provided to a different antenna 420.
  • IFFT inverse fast Fourier transform
  • each receiver 454 receives the signal via its respective antenna 452 at the second communications device 450 .
  • Each receiver 454 recovers the information modulated onto the radio frequency carrier and converts the radio frequency stream into a baseband multi-carrier symbol stream that is provided to a receive processor 456 .
  • the receive processor 456 and the multi-antenna receive processor 458 implement various signal processing functions of the L1 layer.
  • Multi-antenna receive processor 458 performs receive analog precoding/beamforming operations on the baseband multi-carrier symbol stream from receiver 454.
  • the receive processor 456 converts the baseband multi-carrier symbol stream after the received analog precoding/beamforming operation from the time domain to the frequency domain using a Fast Fourier Transform (FFT).
  • FFT Fast Fourier Transform
  • the physical layer data signal and the reference signal are demultiplexed by the receiving processor 456, where the reference signal will be used for channel estimation, and the data signal is recovered after multi-antenna detection in the multi-antenna receiving processor 458 with the second Any parallel flow to which communication device 450 is the destination.
  • the symbols on each parallel stream are demodulated and recovered in the receive processor 456, and soft decisions are generated.
  • the receive processor 456 then decodes and deinterleaves the soft decisions to recover the upper layer data and control signals transmitted by the first communications device 410 on the physical channel.
  • Controller/processor 459 implements the functions of the L2 layer. Controller/processor 459 may be associated with memory 460 which stores program code and data. Memory 460 may be referred to as computer-readable media. In the DL, the controller/processor 459 provides demultiplexing between transport and logical channels, packet reassembly, decryption, header decompression, control signal processing to recover upper layer packets from the core network. The upper layer packets are then provided to all protocol layers above the L2 layer. Various control signals may also be provided to L3 for L3 processing. Controller/processor 459 is also responsible for error detection using acknowledgment (ACK) and/or negative acknowledgment (NACK) protocols to support HARQ operations.
  • ACK acknowledgment
  • NACK negative acknowledgment
  • a data source 467 is used to provide upper layer data packets to a controller/processor 459.
  • Data source 467 represents all protocol layers above the L2 layer.
  • the controller/processor 459 implements header compression, encryption, packet segmentation and reordering, and logical AND based on the wireless resource allocation of the first communication device 410 Multiplexing between transport channels, implementing L2 layer functions for the user plane and control plane.
  • the controller/processor 459 is also responsible for HARQ operation, retransmission of lost packets, and signaling to the first communications device 410 .
  • the transmit processor 468 performs modulation mapping and channel coding processing, and the multi-antenna transmit processor 457 performs digital multi-antenna spatial precoding, including codebook-based precoding and non-codebook-based precoding, and beam forming processing, and then transmits
  • the processor 468 modulates the generated parallel streams into multi-carrier/single-carrier symbol streams, which undergo analog precoding/beamforming operations in the multi-antenna transmit processor 457 and then are provided to different antennas 452 via the transmitter 454.
  • Each transmitter 454 first converts the baseband symbol stream provided by the multi-antenna transmission processor 457 into a radio frequency symbol stream, and then provides it to the antenna 452.
  • the functionality at the first communication device 410 is similar to that in the transmission from the first communication device 410 to the second communication device 450.
  • the reception function at the second communication device 450 is described in the transmission.
  • Each receiver 418 receives radio frequency signals through its corresponding antenna 420, converts the received radio frequency signals into baseband signals, and provides the baseband signals to multi-antenna receive processor 472 and receive processor 470.
  • the receiving processor 470 and the multi-antenna receiving processor 472 jointly implement the functions of the L1 layer.
  • Controller/processor 475 implements L2 layer functions. Controller/processor 475 may be associated with memory 476 that stores program code and data. Memory 476 may be referred to as computer-readable media.
  • the controller/processor 475 provides demultiplexing between transport and logical channels, packet reassembly, decryption, header decompression, control signal processing to recover upper layer data packets from the second communications device 450 .
  • Upper layer packets from controller/processor 475 may be provided to the core network.
  • Controller/processor 475 is also responsible for error detection using ACK and/or NACK protocols to support HARQ operations.
  • the second communication device 450 includes: at least one processor and at least one memory, the at least one memory includes computer program code; the at least one memory and the computer program code are configured to interact with the At least one processor is used together.
  • the second communication device 450 at least: receives the first CSI reporting configuration; receives the first signaling; sends the first CSI; wherein the first CSI includes a first resource indication and a first reporting amount; the first The value of the resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting configuration includes a first resource configuration, and the first resource configuration is used to configure N RS resources,
  • the N RS resources respectively correspond to the N resource indication values, the first RS resource corresponds to the value of the first resource indication, and the first RS resource is one of the N RS resources;
  • the protocol layer to which the first signaling belongs is a protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reporting amount is based
  • the second communication device 450 includes: a memory that stores a program of computer-readable instructions that, when executed by at least one processor, generates actions, and the actions include: receiving a first A CSI reporting configuration; receiving the first signaling; sending the first CSI; wherein the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values 1.
  • N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration, and the first resource configuration is used to configure N RS resources, and the N RS resources respectively correspond to the N Resource indication value, the first RS resource corresponds to the value of the first resource indication, the first RS resource is one of the N RS resources;
  • the protocol layer to which the first signaling belongs is the RRC layer The protocol layer below, the first signaling is used to determine the first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is consistent with the The first index set association.
  • the first communication device 410 includes: at least one processor and at least one memory, the at least one memory includes computer program code; the at least one memory and the computer program code are configured to interact with the At least one processor is used together.
  • the first communication device 410 at least: sends a first CSI reporting configuration; receives first signaling; receives first CSI; wherein the first CSI includes a first resource indication and a first reporting amount; the first The value of the resource indication is one of N resource indication values, and N is a positive integer greater than 1; the first CSI reporting configuration includes a first resource configuration, and the first resource configuration is used to configure N RS resources,
  • the N RS resources respectively correspond to the N resource indication values, the first RS resource corresponds to the value of the first resource indication, and the first RS resource is one of the N RS resources;
  • the protocol layer to which the first signaling belongs is a protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reporting amount is based on
  • the first communication device 410 includes: a memory that stores a program of computer-readable instructions that, when executed by at least one processor, generates actions, and the actions include: sending a first A CSI reporting configuration; receiving first signaling; receiving first CSI; wherein the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values 1.
  • N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration, and the first resource configuration is used to configure N RS resources, and the N RS resources respectively correspond to the N Resource indication value, the first RS resource corresponds to the value of the first resource indication, the first RS resource is one of the N RS resources;
  • the protocol layer to which the first signaling belongs is the RRC layer The protocol layer below, the first signaling is used to determine the first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is consistent with the The first index set association.
  • the first node in this application includes the second communication device 450.
  • the second node in this application includes the first communication device 410 .
  • the antenna 452 the receiver 454, the reception processor 456, the multi-antenna reception processor 458, the controller/processor 459, the memory 460, the data At least one of the sources 467 ⁇ is used to receive the first CSI reporting configuration in this application;
  • the antenna 420, the transmitter 418, the transmission processor 416, the multi-antenna transmission processor 471 , at least one of the controller/processor 475 and the memory 476 ⁇ is used to send the first CSI reporting configuration in this application.
  • the antenna 452 the receiver 454, the reception processor 456, the multi-antenna reception processor 458, the controller/processor 459, the memory 460, the data At least one of the sources 467 ⁇ is used to receive the first signaling in the present application; ⁇ the antenna 420, the transmitter 418, the transmit processor 416, the multi-antenna transmit processor 471, At least one of the controller/processor 475 and the memory 476 ⁇ is used to send the first signaling in this application.
  • At least one of ⁇ the antenna 452, the transmitter 454, the transmit processor 468, the multi-antenna transmit processor 457, the controller/processor 459, and the memory 460 ⁇ is used to transmit the first CSI in this application; ⁇ the antenna 420, the receiver 418, the receive processor 470, the multi-antenna receive processor 472, the controller/processing 475, at least one of the memories 476 ⁇ is used to receive the first CSI in this application.
  • Embodiment 5 illustrates a flow chart of wireless transmission according to an embodiment of the present application, as shown in FIG. 5 .
  • the first node U01 and the second node N02 are respectively two communication nodes transmitting through the air interface.
  • the first CSI reporting configuration is received in step S5101; the first signaling is received in step S5102; and the first CSI is sent in step S5103.
  • the first CSI reporting configuration is sent in step S5201; the first signaling is sent in step S5202; and the first CSI is received in step S5203.
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration.
  • the first resource configuration is used to configure N RS resources.
  • the N RS resources respectively correspond to the N resource indication values.
  • the first RS resource corresponds to the first RS resource.
  • the value of a resource indication, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • the protocol layer to which the first signaling belongs is the MAC layer.
  • the protocol layer to which the first signaling belongs is the MAC layer, and the first signaling is MAC CE.
  • the protocol layer to which the first signaling belongs is the physical layer.
  • the protocol layer to which the first signaling belongs is the physical layer
  • the first signaling is physical layer signaling
  • the protocol layer to which the first signaling belongs is the physical layer, and the first signaling is DCI signaling.
  • the first signaling is cell common.
  • the first signaling is cell specific.
  • the first signaling is user equipment group common (UE group common).
  • the first signaling is UE group specific.
  • the first signaling is user equipment specific (UE specific).
  • the first signaling is used to update or indicate a spatial element.
  • the first signaling is used to update or indicate the number of spatial elements.
  • the first signaling is used to activate or deactivate at least one TCI (Transmission Configuration Indicator, Transmission Configuration Indicator) state.
  • TCI Transmission Configuration Indicator, Transmission Configuration Indicator
  • the first signaling is used to activate at least one TCI (Transmission Configuration Indicator, Transmission Configuration Indicator) state.
  • TCI Transmission Configuration Indicator, Transmission Configuration Indicator
  • the first signaling is used to deactivate at least one TCI (Transmission Configuration Indicator, Transmission Configuration Indicator) state.
  • TCI Transmission Configuration Indicator, Transmission Configuration Indicator
  • the first signaling is used to activate a spatial element.
  • the first signaling is used to deactivate a spatial element.
  • the first signaling is used to activate or deactivate spatial elements.
  • the first signaling is used to activate or deactivate the number of spatial elements.
  • the first signaling is used to activate the number of spatial elements.
  • the first signaling is used to deactivate the number of spatial elements.
  • the spatial element includes TCI status.
  • the spatial elements include TCI status, antenna element (antenna element), antenna panel (antenna panel), antenna port (antenna port), logical (logical) antenna port, transmit radio frequency channel (TxRU, Transmit Radio Unit) ), at least one of the sending and receiving nodes (TRxP, Transmission Reception Point).
  • the first signaling is used to indicate a first index set.
  • the first signaling explicitly indicates the first index set.
  • the first signaling implicitly indicates the first index set.
  • the first signaling directly indicates the first index set.
  • the first signaling indirectly indicates the first index set.
  • the first index set includes one index.
  • the first index set includes at least one index.
  • the first index set includes multiple indexes.
  • any index in the first index set is a TCI status index.
  • any index in the first index set is an RS resource index.
  • the first index set includes an index of an RS resource set.
  • any index in the first index set is an index of an RS resource set.
  • the first index set includes a coresetPoolIndex value.
  • any index in the first index set is a coresetPoolIndex value.
  • the first index set includes an index of a CORESET (Control resource set, control resource set) pool.
  • CORESET Control resource set, control resource set
  • any index in the first index set is an index of a CORESET (Control resource set, control resource set) pool.
  • CORESET Control resource set, control resource set
  • any index in the first index set is a CORESET (Control resource set, control resource set) index.
  • the first index set includes only one index, and any index in the first index set is the first index set.
  • a CORESET pool includes at least one CORESET.
  • the value range of a CORESET (Control resource set, control resource set) pool index range includes 0 and 1.
  • any index in the first index set is related to a spatial element.
  • any index in the first index set is used to indicate the adjustment of the spatial element.
  • any index in the first index set is used to determine the adjusted spatial element.
  • any index in the first index set is used to indicate the adjusted spatial element.
  • any index in the first index set is a non-negative integer.
  • any index in the first index set is an integer.
  • any index in the first index set is a real number.
  • any index in the first index set is an identifier.
  • any index in the first index set is a bit sequence.
  • the first index set is used to indicate a target RS resource set.
  • any index in the first index set corresponds to at least one RS resource.
  • the first index set is used to indicate at least one TCI state
  • the target RS resource set includes at least one RS resource indicated by the at least one TCI state indicated by the first index set.
  • any index in the first index set is an index of an RS resource set in the target RS resource set.
  • the target RS resource set includes at least one RS resource indicated by each index in the first index set.
  • any index in the first index set is an index of a CORESET
  • the target RS resource set includes at least one RS resource indicated by the TCI status of the CORESET(s) corresponding to the first index set.
  • the target RS resource set includes at least one RS resource.
  • the target RS resource set includes only one RS resource.
  • the target RS resource set includes CSI-RS resources.
  • the target RS resource set includes SS/PBCH block resources.
  • the target RS resource set includes at least one of CSI-RS resources or SS/PBCH block resources.
  • the first signaling is used to deactivate the target RS resource set.
  • the first signaling is used to activate the target RS resource set.
  • the first signaling is used to indicate that the first node is not required to measure the target RS resource set.
  • the first node in response to receiving the first signaling, is not required to perform measurements on the target RS resource set.
  • the first signaling is DCI, and a field in the first signaling indicates the first index set.
  • the first signaling is DCI, and multiple fields in the first signaling are jointly used to indicate the first index set.
  • one RS resource is deactivated means that the first node does not measure the one RS resource.
  • one RS resource is deactivated means: the first node is not required to measure the one RS resource.
  • an RS resource is deactivated means: the first node releases the one RS resource.
  • an RS resource is deactivated means: the QCL information of the one RS resource is updated.
  • an RS resource is deactivated means: the first node considers that the one RS resource does not exist.
  • an RS resource is activated means: the first node measures the one RS resource.
  • the meaning of "an RS resource is activated" includes: the first node believes that the one RS resource exists.
  • the meaning of the sentence "the first RS resource is associated with the first index set” includes: the quasi-co-location information of the first RS resource has nothing to do with the first index set;
  • the meaning of the sentence "the first RS resource is not associated with the first index set” includes: the quasi-co-location information of the first RS resource is related to the first index set.
  • the meaning of the sentence "the first RS resource is associated with the first index set” includes: the first index set is used to indicate at least one TCI state, and the first RS resource
  • the quasi-co-location information is one TCI state among the at least one TCI state indicated by the first index set;
  • the meaning of the sentence "the first RS resource is not associated with the first index set” includes: The first index set is used to indicate at least one TCI state, and the quasi-co-location information of the first RS resource does not belong to the at least one TCI state indicated by the first index set.
  • the quasi-co-location information of the first RS resource includes a TCI state; the meaning of the sentence "the first RS resource is associated with the first index set” includes: the first index set is used to indicate at least one TCI state, and the quasi-co-location information of the first RS resource is one of the at least one TCI state indicated by the first index set; the sentence "the first "RS resources are not associated with the first index set” means: the first index set is used to indicate at least one TCI state, and the quasi-co-location information of the first RS resource does not belong to the first index set The at least one TCI status indicated.
  • the meaning of the sentence "the first RS resource is associated with the first index set” includes: the first index set is used to indicate at least one TCI state, and the first RS resource is associated with the first index set.
  • An RS resource indicated by a TCI status indicated by the first index set is quasi-co-located;
  • the meaning of the sentence "the first RS resource is not associated with the first index set” includes: the first The index set is used to indicate at least one TCI state, and the first RS resource is not quasi-co-located with any RS resource indicated by any TCI state indicated by the first index set.
  • the meaning of the sentence "the first RS resource is associated with the first index set” includes: the first index set is used to indicate at least one RS resource, and the first RS resource is One RS resource among the at least one RS resource indicated by the first index set; the meaning of the sentence "the first RS resource is not associated with the first index set” includes: the first index A set is used to indicate at least one RS resource, and the first RS resource does not belong to the at least one RS resource indicated by the first index set.
  • the meaning of the sentence "the first RS resource is associated with the first index set” includes: the first index set is used to indicate at least one RS resource, and the first RS resource is associated with the first index set.
  • An RS resource indicated by the first index set is quasi-co-located;
  • the meaning of the sentence "the first RS resource is not associated with the first index set” includes: the first index set is used Indicates at least one RS resource, and the first RS resource and one RS resource indicated by the first index set are not quasi-co-located.
  • the meaning of the sentence "two RS resources are quasi-co-located” includes: the quasi-co-location parameters of the two RS resources are the same; the meaning of the sentence "the two RS resources are not quasi-co-located” includes: the The quasi-co-location parameters of the two RS resources are different.
  • the sentence "the quasi-co-location parameters of the two RS resources are not the same” means: the first node does not assume that the quasi-co-location parameters of the two RS resources are the same.
  • the meaning of the sentence "two RS resources are quasi-co-located” includes: the first node device assumes that the same quasi-co-located parameter is used to receive the two RS resources; the sentence "two RS resources are quasi-co-located" "Not quasi-co-located” means including: the first node device does not assume that the same quasi-co-located parameter is used to receive the two RS resources.
  • the meaning of the sentence "two RS resources are quasi-co-located” includes: the first node device assumes that the same quasi-co-located parameter is used to send or receive the two RS resources; the sentence "two RS resources are quasi-co-located” "The RS resource is not quasi-co-located” means that the first node device does not assume that the same quasi-co-located parameter is used to send or receive the two RS resources.
  • the sentence "two RS resources are quasi-co-located” means: the two RS resources have the same quasi-co-located characteristics; the sentence "two RS resources are quasi-co-located” means: The two RS resources have different quasi-co-location characteristics.
  • the meaning of the sentence "two RS resources are quasi-co-located” includes: the two RS resources have the same spatial reception parameter (Spatial Rxparameter); the meaning of the sentence "the two RS resources are not quasi-co-located” Including: the two RS resources have different spatial reception parameters.
  • the sentence "two RS resources are quasi-co-located” means: the two RS resources have the same quasi-co-located relationship; the sentence "two RS resources are quasi-co-located” means: The two RS resources have different quasi-co-location relationships.
  • the sentence "two RS resources are quasi-co-located” means: the two RS resources have the same quasi-co-located assumption; the sentence "two RS resources are quasi-co-located” means: The two RS resources described above have different quasi-co-location assumptions.
  • a TCI state indicates at least one RS resource and the type of quasi-colocation parameter corresponding to each RS resource.
  • the types of the quasi-co-located parameters include TypeA, TypeB, TypeC and TypeD.
  • the quasi-colocation parameters of type A include Doppler shift, Doppler spread, average delay, and delay spread.
  • the quasi-co-located parameters of Type B include Doppler shift (Doppler shift) and Doppler spread (Doppler spread).
  • the quasi-co-location parameters of type C include Doppler shift (Doppler shift) and average delay (average delay).
  • the quasi-co-located parameters of Type D include spatial reception parameters (Spatial Rx parameters).
  • TypeA As an embodiment, for the specific definitions of TypeA, TypeB, TypeC and TypeD, please refer to Chapter 5.1.5 of 3GPP TS38.214.
  • the quasi-co-location parameters include delay spread (delay spread), Doppler spread (Doppler spread), Doppler shift (Doppler shift), average delay (average delay), or spatial reception parameters (Spatial Rx parameter) one or more.
  • the quasi-co-location parameters include Doppler shift (Doppler shift) and Doppler spread (Doppler spread).
  • the quasi-co-location parameters include Doppler shift (Doppler shift) and average delay (average delay).
  • the quasi-co-location parameters include spatial reception parameters (Spatial Rx parameters).
  • the quasi-co-location parameters include at least one of spatial transmission parameters or spatial reception parameters.
  • the quasi-co-location parameters include a spatial domain receive filter (Spatial Domain Receive Filter).
  • the quasi-co-location parameter includes a spatial domain filter (Spatial Domain Filter).
  • the quasi-co-location parameter includes at least one of a spatial domain transmit filter (spatial domain transmit filter) or a spatial domain receive filter (spatial domain receive filter).
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value is used to indicate the given RS resource.
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value is used to determine the index of the given RS resource.
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value is the index of the given RS resource in a given RS resource set.
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value is the ordering of the given RS resource in a given RS resource set.
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value indicates the position of the given RS resource in a given RS resource set.
  • the meaning of the sentence "a given RS resource corresponds to a given resource indication value" includes: the given resource indication value indicates which RS resource the given RS resource is in the given RS resource set.
  • the given RS resource is the first RS resource in this application
  • the given RS resource set includes the N RS resources
  • the given resource indication value is the first The value indicated by the resource.
  • the given RS resource is the second RS resource in this application
  • the given RS resource set is an RS resource set including the second RS resource
  • the given resource indicates Value is the value indicated by the first resource.
  • the given RS resource is one of the N RS resources in this application, the given RS resource set includes the N RS resources, and the given resource indication value is the One resource indication value corresponding to the given RS resource among the N resource indication values.
  • the index of an RS resource is used to identify the one RS resource.
  • one resource indication value among the N resource indication values corresponds to more than one RS resource.
  • any resource indication value among the N resource indication values corresponds to more than one RS resource.
  • whether the first RS resource is associated with the first index set is used to determine whether the calculation of the first reported amount is conditional on the first RS resource.
  • the calculation of the first reported amount is related to whether the first RS resource is associated with the first index set.
  • the calculation of the first reported amount is conditioned on the first RS resource.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the value of the first reported amount is default.
  • the calculation of the first reporting amount is based on the second RS resource.
  • the calculation of the first reported amount is based on the first RS resource.
  • the first signaling is used for activation.
  • the first signaling is used to activate at least one RS resource.
  • the first signaling is used to activate at least one TCI state.
  • the first signaling is used to activate a spatial element.
  • the value of the first reported amount is default.
  • the calculation of the first reporting amount is based on the second RS resource.
  • Embodiment 6 illustrates a schematic diagram of the first reported amount according to an embodiment of the present application; as shown in FIG. 6 .
  • Embodiment 6 if and only if the first RS resource is not associated with the first index set, the calculation of the first reporting amount is based on the first RS resource.
  • the first resource indication is used to indicate the first RS resource.
  • the calculation of the first reported amount is conditional on one of the first RS resource and the second RS resource.
  • the first resource configuration is also used to configure the second RS resource.
  • the meaning of the sentence "the calculation of the first reported amount is based on the first RS resource” includes: the first RS resource is used for channel measurement, the first reported amount is calculated based on at least the channel measurement of the first RS resource; the meaning of the sentence "the calculation of the first reported amount is based on the second RS resource” includes: the second RS The resource is used for channel measurement, and the first reported amount is calculated based on at least the channel measurement of the second RS resource.
  • the meaning of the sentence "the calculation of the first reported amount is conditional on the first RS resource” includes: the first RS resource is used for at least all of channel measurement or interference measurement.
  • the channel measurement, the first reported amount is calculated based on at least the channel measurement of the first RS resource or the interference measurement;
  • the sentence "the first reported amount "The calculation is conditional on the second RS resource” means that the second RS resource is used for at least the channel measurement in channel measurement or interference measurement, and the first reported amount is based on at least the Calculated from at least the channel measurement of the second RS resource or the interference measurement.
  • the meaning of the sentence "the calculation of the first reported amount is based on the first RS resource” includes: the first RS resource is used for channel measurement, the first reported amount It is based on interference measurement and the channel measurement based on the first RS resource, and is calculated according to the generation criterion; the sentence "The calculation of the first reported amount is conditioned on the second RS resource” This means: the second RS resource is used for channel measurement, the first reported amount is calculated based on interference measurement and the channel measurement based on the second RS resource, and according to the generation criterion; the generation The criterion is one of the maximum transmission capacity, the maximum SINR, and the minimum BLER (Block Error Rate, block error rate).
  • the meaning of the sentence "the calculation of the first reported amount is based on the first RS resource” includes: the first RS resource is used for channel measurement, the first reported amount It is based on at least the channel measurement of the first RS resource and is calculated according to the maximum transmission capacity criterion; the meaning of the sentence "the calculation of the first reported amount is based on the second RS resource” It includes: the second RS resource is used for channel measurement, and the first reported amount is at least based on the channel measurement of the second RS resource and calculated according to a maximum transmission capacity criterion.
  • the meaning of the sentence "the calculation of the first reported amount is based on the first RS resource” includes: the first RS resource is used for channel measurement, the first reported amount It is based on at least the channel measurement of the first RS resource and is calculated according to the maximum SINR criterion; the meaning of the sentence "the calculation of the first reported amount is based on the second RS resource” includes : The second RS resource is used for channel measurement, and the first reported amount is at least based on the channel measurement of the second RS resource and is calculated according to the maximum SINR criterion.
  • the meaning of the sentence "the calculation of the first reported amount is based on the first RS resource” includes: the first RS resource is used for channel measurement, the first reported amount is at least based on the channel measurement of the first RS resource and is calculated according to the minimum BLER criterion; the meaning of the sentence "the calculation of the first reported amount is conditional on the second RS resource” includes : The second RS resource is used for channel measurement, and the first reported amount is at least based on the channel measurement of the second RS resource and is calculated according to the minimum BLER criterion.
  • the meaning of the sentence "the calculation of the first reported amount is conditional on the first RS resource” includes: the first RS resource is used for at least all of channel measurement or interference measurement.
  • the channel measurement, the first reported amount is based on at least the channel measurement of the first RS resource or the interference measurement, and is calculated according to the maximum transmission capacity criterion;
  • the sentence "The calculation of the first reported amount is conditional on the second RS resource” means that the second RS resource is used for at least the channel measurement in channel measurement or interference measurement, and the first The reported amount is based on at least the channel measurement of the second RS resource or the interference measurement, and is calculated according to the maximum transmission capacity criterion.
  • the meaning of the sentence "the calculation of the first reported amount is conditional on the first RS resource” includes: the first RS resource is used for at least all of channel measurement or interference measurement.
  • the channel measurement, the first reported amount is based on at least the channel measurement of the first RS resource or the interference measurement, and is calculated according to the maximum SINR criterion;
  • the sentence " "The calculation of the first reported amount is conditional on the second RS resource” means that the second RS resource is used for at least the channel measurement in channel measurement or interference measurement, and the first reported amount
  • the quantity is based on at least the channel measurement of the second RS resource or the interference measurement and is calculated according to the maximum SINR criterion.
  • the meaning of the sentence "the calculation of the first reported amount is conditional on the first RS resource” includes: the first RS resource is used for at least all of channel measurement or interference measurement.
  • the channel measurement, the first reported amount is based on at least the channel measurement of the first RS resource or the interference measurement, and is calculated according to the minimum BLER criterion;
  • the meaning of the sentence "the calculation of the first reported amount is conditional on the second RS resource” includes: the second RS resource is used for at least the channel measurement in channel measurement or interference measurement, so The first reported amount is based on at least the channel measurement of the second RS resource or the interference measurement, and is calculated according to the minimum BLER criterion.
  • Embodiment 7 illustrates a schematic diagram of the first reported amount according to another embodiment of the present application; as shown in FIG. 7 .
  • Embodiment 7 when the first RS resource is associated with the first index set, the value of the first reported amount is default.
  • the value of the first resource indication is a default value.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity is reserved.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity indicates out of range.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity does not indicate an integer.
  • the meaning of the sentence "the value of the first reported quantity is default" includes: the value of the first reported quantity does not indicate a numerical value.
  • the meaning of the sentence "the value of the first reported quantity is default" includes: the value of the first reported quantity is 0.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity is 1.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity is the minimum value in the candidate range of the first reported quantity.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the value of the first reported quantity is the worst value in the candidate range of the first reported quantity.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the first reported quantity is RI, and the value of the first reported quantity is 1.
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the first reported quantity is CQI, and the value of the first reported quantity is the minimum CQI value.
  • the meaning of the sentence "The value of the first reported amount is default” includes: the first reported amount is L1-RSRP, and the value of the first reported amount is the minimum L1-RSRP value. .
  • the meaning of the sentence "The value of the first reported quantity is default” includes: the first reported quantity is L1-SINR, and the value of the first reported quantity is the minimum L1-SINR value. .
  • the meaning of the sentence "the value of the first reported quantity is default” includes: the first reported quantity is PMI, and the value of the first reported quantity is the minimum PMI value.
  • Embodiment 8 illustrates a schematic diagram of the first reported amount according to another embodiment of the present application; as shown in FIG. 8 .
  • the calculation of the first reported amount is based on the second RS resource; the second RS resource corresponds to the first The value indicated by a resource.
  • the first resource indication is used to indicate the second RS resource.
  • the value of the first resource indication corresponds to the first RS resource and the second RS resource.
  • the calculation of the first reported amount is based on the second RS resource, and the second RS resource is related to the first index set. Index collections are not related.
  • whether the calculation of the first reported amount is based on the first RS resource or the second RS resource depends on whether the first RS resource is associated with the first index set.
  • the first node determines whether the calculation of the first reported amount is conditioned on the first RS resource or on the second RS resource.
  • the second RS resource is a CSI-RS resource or an SS/PBCH block resource.
  • the second RS resource is a CSI-RS resource.
  • the second RS resource is an SS/PBCH block resource.
  • the second RS resource depends on the first index set.
  • the second RS resource depends on an index in the first index set.
  • the second RS resource depends on at least one index in the first index set.
  • the second RS resource and the first RS resource belong to the same RS resource set among M1 RS resource sets, where M1 is a positive integer greater than 1.
  • the M1 RS resource sets are configurable.
  • the second RS resource corresponds to one index among M2 indexes
  • the first RS resource corresponds to one index among the M2 indexes
  • the second RS resource and the first RS resource Corresponding to the same index among the M2 indexes, M2 is a positive integer greater than 1.
  • the M2 indexes are respectively the indexes of M2 RS resource sets.
  • the M2 indexes are respectively the indexes of M2 TCI state sets.
  • the M2 indexes are respectively the indexes of M2 CORESET pools, and one CORESET pool includes at least one CORESET.
  • the M2 indexes are respectively M2 power control closed loop indexes.
  • the M2 indexes are respectively M2 power control loop (loop) indexes.
  • the M2 indexes are respectively M2 power control adjustment state indexes (power control adjustment state index).
  • the M2 indexes are M2 sri-PUSCH-ClosedLoopIndex respectively.
  • Embodiment 9 illustrates a schematic diagram of the second RS resource according to an embodiment of the present application; as shown in Figure 9.
  • the first CSI reporting configuration is used to configure two RS resource sets for channel measurement, and the first RS resource and the second RS resource respectively belong to the two sets of RS resources for channel measurement. Measured RS resource collection.
  • the value of the first resource indication corresponds to the first RS resource and the second RS resource.
  • the first RS resource and the second RS resource have the same index in the corresponding RS resource set used for channel measurement, and the value of the first resource indication indicates the first The index of the RS resource in the RS resource set used for channel measurement to which it belongs.
  • the first RS resource and the second RS resource have the same order in the corresponding RS resource set used for channel measurement, and the value of the first resource indication indicates the first The ordering of RS resources in the corresponding RS resource set used for channel measurement.
  • the first RS resource and the second RS resource have the same position in the corresponding RS resource set used for channel measurement, and the value of the first resource indication indicates the first The position of the RS resource in the corresponding RS resource set used for channel measurement.
  • the first RS resource is the i-th RS resource in the associated RS resource set used for channel measurement
  • the second RS resource is the i-th RS resource in the associated RS resource set used for channel measurement.
  • i RS resources; the value of the first resource indication indicates the i.
  • the i is a positive integer.
  • the i is a non-negative integer.
  • the value of the first resource indication is equal to the i.
  • the value of the first resource indication indicates i plus 1.
  • the value of the first resource indication indicates i minus 1.
  • the first resource configuration is also used to configure the second RS resource.
  • the first CSI reporting configuration includes the first resource configuration and the second resource configuration.
  • the first resource configuration is used to configure an RS resource set including the first RS resource among the two RS resource sets used for channel measurement
  • the second resource configuration is used to configure the two RS resource sets used for channel measurement.
  • One RS resource set in the RS resource set includes the second RS resource.
  • the second resource configuration is a domain whose name in the RRC IE includes resourcesForChannelMeasurement.
  • the second resource configuration is a domain whose name in the RRC IE includes ChannelMeasurement.
  • the second resource configuration is a domain whose name in RRC IE CSI-ReportConfig includes resourcesForChannelMeasurement.
  • the second resource configuration is a domain whose name in RRC IE CSI-ReportConfig includes ChannelMeasurement.
  • the second resource configuration and the second resource configuration belong to RRC IE CSI-ResourceConfig.
  • the second resource configuration and the second resource configuration belong to the same RRC IE.
  • the second resource configuration includes a partial field in an RRC IE.
  • the second resource configuration includes an index of each RS resource in one RS resource set including the second RS resource among the two RS resource sets used for channel measurement.
  • the second resource configuration includes configuration information of each RS resource in one RS resource set including the second RS resource among the two RS resource sets used for channel measurement.
  • the index of the first RS resource and the index of the second RS resource are different.
  • one RS resource set including the first RS resource among the two RS resource sets used for channel measurement includes the N RS resources in this application.
  • one RS resource set including the second RS resource among the two RS resource sets used for channel measurement includes at least one of CSI-RS resources or SS/PBCH block resources.
  • one RS resource set including the second RS resource among the two RS resource sets used for channel measurement includes only SS/PBCH block resources.
  • one RS resource set including the second RS resource among the two RS resource sets used for channel measurement includes only CSI-RS resources.
  • Embodiment 10 illustrates a schematic diagram of the second RS resource according to another embodiment of the present application; as shown in Figure 10.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the quasi-co-location information of the second RS resource is different from the first RS resource. quasi-co-location information.
  • the second RS resource and the first RS resource occupy the same resource.
  • the second RS resource and the first RS resource occupy the same resource element (Resource Element, RE).
  • the second RS resource and the first RS resource belong to the NZP CSI-RS resource corresponding to the same NZP-CSI-RS resource index.
  • the index of the second RS resource and the index of the first RS resource are the same NZP-CSI-RS resource index.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the second RS resource and the first RS resource are not quasi-co-located.
  • Embodiment 11 illustrates a schematic diagram of quasi-co-location information of the second RS resource according to an embodiment of the present application; as shown in Figure 11.
  • the quasi-co-location information of the first RS resource and the quasi-co-location information of the second RS resource belong to the configuration information of the first RS resource.
  • the quasi-co-location information of an RS resource includes a TCI status.
  • the quasi-co-location information of an RS resource includes quasi-co-location parameters.
  • the quasi-co-location information of an RS resource includes one of a TCI status or a quasi-co-location parameter.
  • the quasi-co-location information of an RS resource includes at least one of a spatial domain transmit filter (spatial domain transmit filter), a spatial domain receive filter, a spatial transmit parameter, or a spatial receive parameter.
  • Embodiment 12 illustrates a schematic diagram of quasi-co-location information of the second RS resource according to another embodiment of the present application; as shown in Figure 12.
  • the quasi-co-location information of the second RS resource relies on the first index set.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the quasi-co-location information of the two RS resources is not a TCI state indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the quasi-co-location information of the two RS resources is a TCI state other than the at least one TCI state indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the two RS resources are quasi-co-located with one RS resource other than the RS resource indicated by the at least one TCI status indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the two RS resources are not quasi-co-located with any RS resource indicated by any TCI status indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one RS resource, and the first index set is used to indicate at least one RS resource.
  • the two RS resources are quasi-co-located with one RS resource other than the RS resource indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one RS resource, and the first index set is used to indicate at least one RS resource.
  • the two RS resources are not quasi-co-located with any RS resource indicated by the first index set.
  • the first signaling is used for deactivation.
  • the first signaling is used to deactivate at least one RS resource.
  • the first signaling is used to deactivate at least one TCI state.
  • the first signaling is used to deactivate a spatial element.
  • the meaning of the sentence "the quasi-co-location information of the second RS resource depends on the first index set” includes: the quasi-co-location information of the second RS resource depends on the first index set an index in .
  • the meaning of the sentence "the quasi-co-location information of the second RS resource depends on the first index set” includes: the quasi-co-location information of the second RS resource depends on the first index set at least one index in .
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the quasi-co-location information of the two RS resources is one TCI state among the at least one TCI state indicated by the first index set.
  • the first signaling is used for activation.
  • the first signaling is used to activate at least one RS resource.
  • the first signaling is used to activate at least one TCI state.
  • the first signaling is used to activate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one TCI state, and the first index set is used to indicate at least one TCI state.
  • the two RS resources are quasi-co-located with one RS resource indicated by one TCI status indicated by the first index set.
  • the first signaling is used for activation.
  • the first signaling is used to activate at least one RS resource.
  • the first signaling is used to activate at least one TCI state.
  • the first signaling is used to activate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one RS resource, and the first index set is used to indicate at least one RS resource.
  • the second RS resource is one RS resource among the at least one RS resource indicated by the first index set.
  • the first signaling is used for activation.
  • the first signaling is used to activate at least one RS resource.
  • the first signaling is used to activate at least one TCI state.
  • the first signaling is used to activate a spatial element.
  • the meaning of the sentence "The quasi-co-location information of the second RS resource depends on the first index set" includes: the first index set is used to indicate at least one RS resource, and the first index set is used to indicate at least one RS resource.
  • the two RS resources are quasi-co-located with the one RS resource indicated by the first index set.
  • the first signaling is used for activation.
  • the first signaling is used to activate at least one RS resource.
  • the first signaling is used to activate at least one TCI state.
  • the first signaling is used to activate a spatial element.
  • Embodiment 13 illustrates a structural block diagram of a processing device used in a first node device according to an embodiment of the present application; as shown in FIG. 13 .
  • the processing device 1200 in the first node device includes a first receiver 1201 and a first transmitter 1202.
  • the first node device is user equipment.
  • the first node device is a relay node device.
  • the first receiver 1201 includes the ⁇ antenna 452, receiver 454, receiving processor 456, multi-antenna receiving processor 458, controller/processor 459, memory 460, and data source in Embodiment 4. At least one of 467 ⁇ .
  • the first transmitter 1202 includes the ⁇ antenna 452, transmitter 454, transmit processor 468, multi-antenna transmit processor 457, controller/processor 459, memory 460, data source in Embodiment 4. At least one of 467 ⁇ .
  • the first receiver 1201 receives the first CSI reporting configuration and receives the first signaling.
  • the first transmitter 1202 sends the first CSI.
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration, and the first resource configuration is used When configuring N RS resources, the N RS resources respectively correspond to the N resource indication values, the first RS resource corresponds to the value of the first resource indication, and the first RS resource is the N One of the RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reporting amount is based on The first RS resource is conditionally dependent on whether the first RS resource is associated with the first index set.
  • the calculation of the first reporting amount is based on the first RS resource.
  • the value of the first reported amount is default.
  • the calculation of the first reported amount is based on the second RS resource; the second RS resource corresponds to the first The value indicated by the resource.
  • the first CSI reporting configuration is used to configure two RS resource sets used for channel measurement, and the first RS resource and the second RS resource respectively belong to the two sets used for channel measurement.
  • RS resource collection is used to configure two RS resource sets used for channel measurement, and the first RS resource and the second RS resource respectively belong to the two sets used for channel measurement.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the quasi-co-location information of the second RS resource is different from that of the first RS resource. Quasi-co-location information.
  • the quasi-colocation information of the first RS resource and the quasi-colocation information of the second RS resource belong to the configuration information of the first RS resource; or, the quasi-colocation information of the second RS resource
  • the address information relies on the first index set.
  • Embodiment 14 illustrates a structural block diagram of a processing device used in a second node device according to an embodiment of the present application; as shown in FIG. 14 .
  • the processing device 1300 in the second node device includes a second transmitter 1301 and a second receiver 1302.
  • the second node device is a base station device.
  • the second node device is user equipment.
  • the second node device is a relay node device.
  • the second transmitter 1301 includes ⁇ antenna 420, transmitter 418, transmission processor 416, multi-antenna transmission processor 471, controller/processor 475, memory 476 ⁇ in Embodiment 4. At least one.
  • the second receiver 1302 includes ⁇ antenna 420, receiver 418, receiving processor 470, multi-antenna receiving processor 472, controller/processor 475, memory 476 ⁇ in Embodiment 4. At least one.
  • the second transmitter 1301 sends the first CSI reporting configuration; sends the first signaling.
  • the second receiver 1302 receives the first CSI.
  • the first CSI includes a first resource indication and a first reporting amount; the value of the first resource indication is one of N resource indication values, and N is a positive integer greater than 1;
  • the first CSI reporting configuration includes a first resource configuration.
  • the first resource configuration is used to configure N RS resources.
  • the N RS resources respectively correspond to the N resource indication values.
  • the first RS resource corresponds to the first RS resource.
  • the value of a resource indication, the first RS resource is one of the N RS resources; the protocol layer to which the first signaling belongs is the protocol layer below the RRC layer, and the first signaling is used to determine the first index set; whether the calculation of the first reported amount is conditional on the first RS resource depends on whether the first RS resource is associated with the first index set.
  • the calculation of the first reporting amount is based on the first RS resource.
  • the value of the first reported amount is default.
  • the calculation of the first reported amount is based on the second RS resource; the second RS resource corresponds to the first The value indicated by the resource.
  • the first CSI reporting configuration is used to configure two RS resource sets used for channel measurement, and the first RS resource and the second RS resource respectively belong to the two sets used for channel measurement.
  • RS resource collection is used to configure two RS resource sets used for channel measurement, and the first RS resource and the second RS resource respectively belong to the two sets used for channel measurement.
  • the second RS resource and the first RS resource belong to RS resources corresponding to the same RS resource index, and the quasi-co-location information of the second RS resource is different from that of the first RS resource. Quasi-co-location information.
  • the quasi-colocation information of the first RS resource and the quasi-colocation information of the second RS resource belong to the configuration information of the first RS resource; or, the quasi-colocation information of the second RS resource
  • the address information relies on the first index set.
  • User equipment, terminals and UEs in this application include but are not limited to drones, communication modules on drones, remote control aircraft, aircraft, small aircraft, mobile phones, tablets, notebooks, vehicle-mounted communication equipment, wireless sensors, Internet cards, Internet of Things terminals, RFID terminals, NB-IOT terminals, MTC (Machine Type Communication) terminals, eMTC (enhanced MTC, enhanced MTC) terminals, data cards, Internet cards, vehicle-mounted communication equipment, low-cost mobile phones, low-cost Cost-effective tablet computers and other wireless communication devices.
  • MTC Machine Type Communication
  • eMTC enhanced MTC
  • the base station or system equipment in this application includes but is not limited to macro cell base station, micro cell base station, home base station, relay base station, gNB (NR Node B) NR Node B, TRP (Transmitter Receiver Point, transmitting and receiving node) and other wireless communications equipment.
  • gNB NR Node B
  • TRP Transmitter Receiver Point

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Abstract

本申请公开了一种被用于无线通信的节点中的方法和装置。第一节点接收第一CSI上报配置;接收第一信令;发送第一CSI。所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。

Description

一种被用于无线通信的节点中的方法和装置 技术领域
本申请涉及无线通信***中的传输方法和装置,尤其是支持蜂窝网的无线通信***中的无线信号的传输方法和装置。
背景技术
未来无线通信***的应用场景越来越多元化,不同的应用场景对***提出了不同的性能要求。为了满足多种应用场景的不同的性能需求,在3GPP(3rd Generation Partner Project,第三代合作伙伴项目)RAN(Radio Access Network,无线接入网)#72次全会上决定对新空口技术(NR,New Radio)(或5G)进行研究,在3GPP RAN #75次全会上通过了新空口技术(NR,New Radio)的WI(Work Item,工作项目),开始对NR进行标准化工作。
当前,R18版本的5G NR已经开始了研究工作,网络能量节省(network energy saving)是其中一个SI(Study Item,研究工作),其中基站的空间元素(spatial element)(比如:天线元素(antenna element),天线面板(antenna panel),天线端口(antenna port),逻辑(logical)天线端口,发送射频通道(TxRU,Transmit Radio Unit),发收节点(TRxP,Transmission Reception Point)等等)的适应化(adaptation)是能量节省的一个研究方向。
发明内容
发明人通过研究发现,在无线通信***中,CSI(Channel State Information,信道状态信息)上报是一个关键问题。
针对上述问题,本申请公开了一种解决方案。需要说明的是,在本申请的描述中,只是将上下行链路作为一个典型应用场景;本申请也同样适用于面临相似问题的其它场景(比如副链路(Sidelink)、车联网等),也可以取得类似的技术效果。此外,不同场景(包括但不限于多载波的场景)采用统一解决方案还有助于降低硬件复杂度和成本。在不冲突的情况下,本申请的第一节点设备中的实施例和实施例中的特征可以应用到第二节点设备中,反之亦然。特别的,对本申请中的术语(Terminology)、名词、函数、变量的解释(如果未加特别说明)可以参考3GPP的规范协议TS36系列、TS37系列、TS38系列中的定义。
作为一个实施例,对本申请中的术语(Terminology)的解释是参考3GPP的规范协议TS36系列的定义。
作为一个实施例,对本申请中的术语的解释是参考3GPP的规范协议TS38系列的定义。
作为一个实施例,对本申请中的术语的解释是参考3GPP的规范协议TS37系列的定义。
作为一个实施例,对本申请中的术语的解释是参考IEEE(Institute of Electrical and Electronics Engineers,电气和电子工程师协会)的规范协议的定义。
本申请公开了一种被用于无线通信的第一节点中的方法,其特征在于,包括:
接收第一CSI上报配置;接收第一信令;
发送第一CSI;
其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,本申请要解决的问题包括:CSI上报量的计算。
根据本申请的一个方面,其特征在于,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
根据本申请的一个方面,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
根据本申请的一个方面,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
根据本申请的一个方面,其特征在于,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
根据本申请的一个方面,其特征在于,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
根据本申请的一个方面,其特征在于,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息;或者,所述第二RS资源的准共址信息依赖所述第一索引集合。
本申请公开了一种被用于无线通信的第二节点中的方法,其特征在于,包括:
发送第一CSI上报配置;接收第一信令;
接收第一CSI;
其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
根据本申请的一个方面,其特征在于,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
根据本申请的一个方面,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
根据本申请的一个方面,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
根据本申请的一个方面,其特征在于,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
根据本申请的一个方面,其特征在于,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
根据本申请的一个方面,其特征在于,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息;或者,所述第二RS资源的准共址信息依赖所述第一索引集合。
本申请公开了一种被用于无线通信的第一节点设备,其特征在于,包括:
第一接收机,接收第一CSI上报配置;接收第一信令;
第一发送机,发送第一CSI;
其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
本申请公开了一种被用于无线通信的第二节点设备,其特征在于,包括:
第二发射机,发送第一CSI上报配置;接收第一信令;
第二接收机,接收第一CSI;
其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个 RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,和传统方案相比,本申请具备如下优势:
-根据RRC层之下的协议层的信令(比如MAC CE或者物理层信令),更快的调整CSI上报量的计算,快速适应了环境和场景的变化。
附图说明
通过阅读参照以下附图中的对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更加明显:
图1示出了根据本申请的一个实施例的接收第一CSI上报配置和第一信令以及发送第一CSI的流程图;
图2示出了根据本申请的一个实施例的网络架构的示意图;
图3示出了根据本申请的一个实施例的用户平面和控制平面的无线协议架构的实施例的示意图;
图4示出了根据本申请的一个实施例的第一通信设备和第二通信设备的示意图;
图5示出了根据本申请的一个实施例的无线传输的流程图;
图6示出了根据本申请的一个实施例的第一上报量的示意图;
图7示出了根据本申请的另一个实施例的第一上报量的示意图;
图8示出了根据本申请的另一个实施例的第一上报量的示意图;
图9示出了根据本申请的一个实施例的第二RS资源的示意图;
图10示出了根据本申请的另一个实施例的第二RS资源的示意图;
图11示出了根据本申请的一个实施例的第二RS资源的准共址信息的示意图;
图12示出了根据本申请的另一个实施例的第二RS资源的准共址信息的示意图;
图13示出了根据本申请的一个实施例的用于第一节点设备中的处理装置的结构框图;
图14示出了根据本申请的一个实施例的用于第二节点中设备的处理装置的结构框图。
具体实施方式
下文将结合附图对本申请的技术方案作进一步详细说明,需要说明的是,在不冲突的情况下,本申请中的实施例和实施例中的特征可以任意相互组合。
实施例1
实施例1示例了根据本申请的一个实施例的接收第一CSI上报配置和第一信令以及发送第一CSI的流程图,如附图1所示。在附图1所示的第一节点100在步骤101中接收第一CSI上报配置;在步骤102中接收第一信令;在步骤103中发送第一CSI,每个方框代表一个步骤。
在实施例1中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
典型的,所述第一CSI(Channel State Information,信道状态信息)上报配置包括一个或多个RRC IE(Information Element,信息元素)。
典型的,所述第一CSI上报配置包括一个RRC IE。
典型的,所述第一CSI上报配置包括一个RRC IE,所述第一CSI上报配置的名称包括CSI-ReportConfig。
典型的,所述第一CSI上报配置包括一个RRC IE,所述第一CSI上报配置的名称包括CSI。
典型的,所述第一CSI上报配置包括RRC IE CSI-ReportConfig。
作为一个实施例,所述第一CSI上报配置包括两个用于信道测量资源配置的域,所述第一资源配置是所述两个用于信道测量资源配置的域中的一个域。
作为一个实施例,所述第一CSI上报配置包括两个名称包括resourcesForChannelMeasurement的域,所述第一资源配置是所述两个名称包括resourcesForChannelMeasurement的域中的一个域。
典型的,所述第一资源配置包括RRC IE CSI-ResourceConfig。
作为一个实施例,一个RS资源的配置信息至少包括所占用的时频资源和准共址(Quasi co-location,QCL)信息。
作为一个实施例,一个RS资源的配置信息至少包括所占用的时频资源或者准共址(Quasi co-location,QCL)信息中的所述所占用的时频资源。
典型的,一个CSI-RS资源的配置信息至少包括所占用的时频资源和准共址(Quasi co-location,QCL)信息。
作为一个实施例,所述第一CSI上报配置还被用于配置干扰测量的RS(Reference Signal,参考信号)资源或者所述第一CSI的上报量中的至少之一。
作为一个实施例,所述第一CSI上报配置还被用于配置干扰测量的RS资源。
作为一个实施例,所述第一CSI上报配置还被用于配置所述第一CSI包括的上报量(report quantity),所述第一CSI所包括的所述上报量至少包括所述第一资源指示和所述第一上报量。
典型的,所述第一资源配置包括一个RRC IE中的部分域(field)。
典型的,所述第一资源配置包括一个RRC IE中的resourcesForChannelMeasurement域。
典型的,所述第一资源配置包括RRC IE CSI-ReportConfig中的resourcesForChannelMeasurement域。
作为一个实施例,所述第一资源配置包括N个RS资源中的每个RS资源的索引。
作为一个实施例,所述第一资源配置包括N个RS资源中的每个RS资源的配置信息。
典型的,所述N个RS资源被用于信道测量。
典型的,所述N个RS资源被用于信道测量或者干扰测量中的至少信道测量。
作为一个实施例,所述N个RS资源中的每个RS资源都是CSI-RS(Channel Status Information Reference Signal,信道状态信息参考信号)资源,所述第一资源指示是CSI-RS资源指示(CSI-RS resource indicator,CRI)。
作为一个实施例,所述N个RS资源中的每个RS资源都是SS(Synchronisation Signal)/PBCH(Physical Broadcast CHannel)块(block)资源,所述第一资源指示是SS/PBCH块资源指示(SS/PBCH Block Resource indicator,SSBRI)。
作为一个实施例,所述N个RS资源中的任一RS资源CSI-RS资源或者SS/PBCH块资源,所述第一资源指示是CSI-RS资源指示(CSI-RS resource indicator,CRI)或者SS/PBCH块资源指示(SS/PBCH Block Resource indicator,SSBRI)。
作为一个实施例,所述第一上报量是PMI(Precoding Matrix Indicator,预编码矩阵指示),CQI(Channel Quality Indicator,信道质量指示),RI(Rank Indicator,秩指示),L1-RSRP(Layer 1-Reference Signal received power,层1-参考信号接收功率)或L1-SINR(Layer 1-Signal to Interference and Noise Ratio,层1-信干噪比)中之一。
作为一个实施例,所述第一CSI仅包括所述第一资源指示和所述第一上报量。
作为一个实施例,所述第一CSI还包括所述第一资源指示和所述第一上报量之外的上报量,所述第一资源指示和所述第一上报量之外的所述上报量是PMI(Precoding Matrix Indicator,预编码矩阵指示),CQI(Channel Quality Indicator,信道质量指示),RI(Rank Indicator,秩指示),L1-RSRP(Layer 1-Reference Signal received power,层1-参考信号接收功率)或L1-SINR(Layer 1-Signal to Interference and Noise Ratio,层1-信干噪比)中不同于所述第一上报量的一个。
作为一个实施例,所述第一CSI包括CRI,RI,PMI和CQI,所述第一资源指示是CRI,所述第一上报量是RI,PMI或CQI中之一。
作为一个实施例,所述第一CSI包括CRI,RI和PMI,所述第一资源指示是CRI,所述第一上报量是RI或PMI。
作为一个实施例,所述第一CSI包括CRI,RI和CQI,所述第一资源指示是CRI,所述第一上报量是RI或CQI。
作为一个实施例,所述第一CSI包括CRI和L1-RSRP,所述第一资源指示是CRI,所述第一上报量是L1-RSRP。
作为一个实施例,所述第一CSI包括SSBRI和L1-RSRP,所述第一资源指示是SSBRI,所述第一上报量是L1-RSRP。
作为一个实施例,所述第一CSI包括CRI和L1-SINR,所述第一资源指示是CRI,所述第一上报量是L1-SINR。
作为一个实施例,所述第一CSI包括SSBRI和L1-SINR,所述第一资源指示是SSBRI,所述第一上报量是L1-SINR。
作为一个实施例,所述第一资源指示包括第一比特序列,所述第一比特序列的取值范围包括所述N个资源指示值。
作为一个实施例,所述N个资源指示值分别是所述第一比特序列的N组比特值。
作为一个实施例,所述N个资源指示值分别是N组比特值。
作为一个实施例,所述N个资源指示值分别是N个非负整数。
作为一个实施例,所述N个资源指示值分别是N个正整数。
作为一个实施例,所述N个资源指示值分别是0,1,…,N-1。
作为一个实施例,所述N个资源指示值分别是1,2,…,N。
实施例2
实施例2示例了根据本申请的一个实施例的网络架构的示意图,如附图2所示。
附图2说明了LTE(Long-Term Evolution,长期演进),LTE-A(Long-Term Evolution Advanced,增强长期演进)及未来5G***的网络架构200。LTE,LTE-A及未来5G***的网络架构200称为EPS(Evolved Packet System,演进分组***)200。5GNR或LTE网络架构200可称为5GS(5G System)/EPS(Evolved Packet System,演进分组***)200或某种其它合适术语。5GS/EPS 200可包括一个或一个以上UE(User Equipment,用户设备)201,一个与UE201进行副链路(Sidelink)通信的UE241,NG-RAN(下一代无线接入网络)202,5GC(5G CoreNetwork,5G核心网)/EPC(Evolved Packet Core,演进分组核心)210,HSS(Home Subscriber Server,归属签约用户服务器)/UDM(Unified Data Management,统一数据管理)220和因特网服务230。5GS/EPS200可与其它接入网络互连,但为了简单未展示这些实体/接口。如附图2所示,5GS/EPS200提供包交换服务,然而所属领域的技术人员将容易了解,贯穿本申请呈现的各种概念可扩展到提供电路交换服务的网络。NG-RAN202包括NR(New Radio,新无线)节点B(gNB)203和其它gNB204。gNB203提供朝向UE201的用户和控制平面协议终止。gNB203可经由Xn接口(例如,回程)连接到其它gNB204。gNB203也可称为基站、基站收发台、无线电基站、无线电收发器、收发器功能、基本服务集合(BSS)、扩展服务集合(ESS)、TRP(发送接收点)或某种其它合适术语。gNB203为UE201提供对5GC/EPC210的接入点。UE201的实例包括蜂窝式电话、智能电话、会话起始协议(SIP)电话、膝上型计算机、个人数字助理(PDA)、卫星无线电、全球定位***、多媒体装置、视频装置、数字音频播放器(例如,MP3播放器)、相机、游戏控制台、无人机、飞行器、窄带物理网设备、机器类型通信设备、陆地交通工具、汽车、可穿戴设备,或任何其它类似功能装置。所属领域的技术人员也可将UE201称为移动台、订户台、移动单元、订户单元、无线单元、远程单元、移动装置、无线装置、无线通信装置、远程装置、移动订户台、接入终端、移动终端、无线终端、远程终端、手持机、用户代理、移动客户端、客户端或某个其它合适术语。gNB203通过S1/NG接口连接到5GC/EPC210。5GC/EPC210包括MME(Mobility Management Entity,移动性管理实体)/AMF(Authentication Management Field,鉴权管理域)/SMF(Session Management Function,会话管理功能)211、其它MME/AMF/SMF214、S-GW(Service Gateway,服务网关)/UPF(User Plane Function,用户面功能)212以及P-GW(Packet Date Network Gateway,分组数据网络网关)/UPF213。MME/AMF/SMF211是处理UE201与5GC/EPC210之间的信令的控制节点。大体上MME/AMF/SMF211提供承载和连接管理。所有用户IP(Internet Protocal,因特网协议)包是通过 S-GW/UPF212传送,S-GW/UPF212自身连接到P-GW/UPF213。P-GW提供UE IP地址分配以及其它功能。P-GW/UPF213连接到因特网服务230。因特网服务230包括运营商对应因特网协议服务,具体可包括因特网,内联网,IMS(IP Multimedia Subsystem,IP多媒体子***)和包交换(Packet switching)服务。
作为一个实施例,本申请中的所述第一节点包括所述UE201。
作为一个实施例,本申请中的所述第一节点包括所述UE241。
作为一个实施例,本申请中的所述第二节点包括所述gNB203。
实施例3
实施例3示例了根据本申请的一个实施例的用户平面和控制平面的无线协议架构的实施例的示意图,如附图3所示。
实施例3示出了根据本申请的一个用户平面和控制平面的无线协议架构的实施例的示意图,如附图3所示。图3是说明用于用户平面350和控制平面300的无线电协议架构的实施例的示意图,图3用三个层展示用于第一通信节点设备(UE,gNB或V2X中的RSU)和第二通信节点设备(gNB,UE或V2X中的RSU)之间,或者两个UE之间的控制平面300的无线电协议架构:层1、层2和层3。层1(L1层)是最低层且实施各种PHY(物理层)信号处理功能。L1层在本文将称为PHY301。层2(L2层)305在PHY301之上,负责第一通信节点设备与第二通信节点设备之间,或者两个UE之间的链路。L2层305包括MAC(Medium Access Control,媒体接入控制)子层302、RLC(Radio Link Control,无线链路层控制协议)子层303和PDCP(Packet Data Convergence Protocol,分组数据汇聚协议)子层304,这些子层终止于第二通信节点设备处。PDCP子层304提供不同无线电承载与逻辑信道之间的多路复用。PDCP子层304还提供通过加密数据包而提供安全性,以及提供第二通信节点设备之间的对第一通信节点设备的越区移动支持。RLC子层303提供上部层数据包的分段和重组装,丢失数据包的重新发射以及数据包的重排序以补偿由于HARQ造成的无序接收。MAC子层302提供逻辑与传输信道之间的多路复用。MAC子层302还负责在第一通信节点设备之间分配一个小区中的各种无线电资源(例如,资源块)。MAC子层302还负责HARQ操作。控制平面300中的层3(L3层)中的RRC(Radio Resource Control,无线电资源控制)子层306负责获得无线电资源(即,无线电承载)且使用第二通信节点设备与第一通信节点设备之间的RRC信令来配置下部层。用户平面350的无线电协议架构包括层1(L1层)和层2(L2层),在用户平面350中用于第一通信节点设备和第二通信节点设备的无线电协议架构对于物理层351,L2层355中的PDCP子层354,L2层355中的RLC子层353和L2层355中的MAC子层352来说和控制平面300中的对应层和子层大体上相同,但PDCP子层354还提供用于上部层数据包的标头压缩以减少无线电发射开销。用户平面350中的L2层355中还包括SDAP(Service Data Adaptation Protocol,服务数据适配协议)子层356,SDAP子层356负责QoS流和数据无线承载(DRB,Data Radio Bearer)之间的映射,以支持业务的多样性。虽然未图示,但第一通信节点设备可具有在L2层355之上的若干上部层,包括终止于网络侧上的P-GW处的网络层(例如,IP层)和终止于连接的另一端(例如,远端UE、服务器等等)处的应用层。
作为一个实施例,附图3中的无线协议架构适用于本申请中的所述第一节点。
作为一个实施例,附图3中的无线协议架构适用于本申请中的所述第二节点。
作为一个实施例,所述第一信令生成于所述PHY301,或所述PHY351。
作为一个实施例,所述第一CSI上报配置生成于所述RRC子层306。
作为一个实施例,所述第一信令生成于所述MAC子层302。
作为一个实施例,所述第一CSI生成于所述PHY301,或所述PHY351。
实施例4
实施例4示例了根据本申请的一个实施例的第一通信设备和第二通信设备的示意图,如附图4所示。附图4是在接入网络中相互通信的第一通信设备410以及第二通信设备450的框图。
第一通信设备410包括控制器/处理器475,存储器476,接收处理器470,发射处理器416,多天线接收处理器472,多天线发射处理器471,发射器/接收器418和天线420。
第二通信设备450包括控制器/处理器459,存储器460,数据源467,发射处理器468,接收处理器 456,多天线发射处理器457,多天线接收处理器458,发射器/接收器454和天线452。
在从所述第一通信设备410到所述第二通信设备450的传输中,在所述第一通信设备410处,来自核心网络的上层数据包被提供到控制器/处理器475。控制器/处理器475实施L2层的功能性。在DL中,控制器/处理器475提供标头压缩、加密、包分段和重排序、逻辑与传输信道之间的多路复用,以及基于各种优先级量度对第二通信设备450的无线电资源分配。控制器/处理器475还负责HARQ操作、丢失包的重新发射,和到第二通信设备450的信令。发射处理器416和多天线发射处理器471实施用于L1层(即,物理层)的各种信号处理功能。发射处理器416实施编码和交错以促进第二通信设备450处的前向错误校正(FEC),以及基于各种调制方案(例如,二元相移键控(BPSK)、正交相移键控(QPSK)、M相移键控(M-PSK)、M正交振幅调制(M-QAM))的星座映射。多天线发射处理器471对经编码和调制后的符号进行数字空间预编码,包括基于码本的预编码和基于非码本的预编码,和波束赋型处理,生成一个或多个并行流。发射处理器416随后将每一并行流映射到子载波,将调制后的符号在时域和/或频域中与参考信号(例如,导频)复用,且随后使用快速傅立叶逆变换(IFFT)以产生载运时域多载波符号流的物理信道。随后多天线发射处理器471对时域多载波符号流进行发送模拟预编码/波束赋型操作。每一发射器418把多天线发射处理器471提供的基带多载波符号流转化成射频流,随后提供到不同天线420。
在从所述第一通信设备410到所述第二通信设备450的传输中,在所述第二通信设备450处,每一接收器454通过其相应天线452接收信号。每一接收器454恢复调制到射频载波上的信息,且将射频流转化成基带多载波符号流提供到接收处理器456。接收处理器456和多天线接收处理器458实施L1层的各种信号处理功能。多天线接收处理器458对来自接收器454的基带多载波符号流进行接收模拟预编码/波束赋型操作。接收处理器456使用快速傅立叶变换(FFT)将接收模拟预编码/波束赋型操作后的基带多载波符号流从时域转换到频域。在频域,物理层数据信号和参考信号被接收处理器456解复用,其中参考信号将被用于信道估计,数据信号在多天线接收处理器458中经过多天线检测后恢复出以第二通信设备450为目的地的任何并行流。每一并行流上的符号在接收处理器456中被解调和恢复,并生成软决策。随后接收处理器456解码和解交错所述软决策以恢复在物理信道上由第一通信设备410发射的上层数据和控制信号。随后将上层数据和控制信号提供到控制器/处理器459。控制器/处理器459实施L2层的功能。控制器/处理器459可与存储程序代码和数据的存储器460相关联。存储器460可称为计算机可读媒体。在DL中,控制器/处理器459提供传输与逻辑信道之间的多路分用、包重组装、解密、标头解压缩、控制信号处理以恢复来自核心网络的上层数据包。随后将上层数据包提供到L2层之上的所有协议层。也可将各种控制信号提供到L3以用于L3处理。控制器/处理器459还负责使用确认(ACK)和/或否定确认(NACK)协议进行错误检测以支持HARQ操作。
在从所述第二通信设备450到所述第一通信设备410的传输中,在所述第二通信设备450处,使用数据源467来将上层数据包提供到控制器/处理器459。数据源467表示L2层之上的所有协议层。类似于在DL中所描述第一通信设备410处的发送功能,控制器/处理器459基于第一通信设备410的无线资源分配来实施标头压缩、加密、包分段和重排序以及逻辑与传输信道之间的多路复用,实施用于用户平面和控制平面的L2层功能。控制器/处理器459还负责HARQ操作、丢失包的重新发射,和到所述第一通信设备410的信令。发射处理器468执行调制映射、信道编码处理,多天线发射处理器457进行数字多天线空间预编码,包括基于码本的预编码和基于非码本的预编码,和波束赋型处理,随后发射处理器468将产生的并行流调制成多载波/单载波符号流,在多天线发射处理器457中经过模拟预编码/波束赋型操作后再经由发射器454提供到不同天线452。每一发射器454首先把多天线发射处理器457提供的基带符号流转化成射频符号流,再提供到天线452。
在从所述第二通信设备450到所述第一通信设备410的传输中,所述第一通信设备410处的功能类似于在从所述第一通信设备410到所述第二通信设备450的传输中所描述的所述第二通信设备450处的接收功能。每一接收器418通过其相应天线420接收射频信号,把接收到的射频信号转化成基带信号,并把基带信号提供到多天线接收处理器472和接收处理器470。接收处理器470和多天线接收处理器472共同实施L1层的功能。控制器/处理器475实施L2层功能。控制器/处理器475可与存储程序代码和数据的存储器476相关联。存储器476可称为计算机可读媒体。控制器/处理器475提供传输与逻辑信道之间的多路分用、包重组装、解密、标头解压缩、控制信号处理以恢复来自第二通信设备450的上层数据包。来自 控制器/处理器475的上层数据包可被提供到核心网络。控制器/处理器475还负责使用ACK和/或NACK协议进行错误检测以支持HARQ操作。
作为一个实施例,所述第二通信设备450包括:至少一个处理器以及至少一个存储器,所述至少一个存储器包括计算机程序代码;所述至少一个存储器和所述计算机程序代码被配置成与所述至少一个处理器一起使用。所述第二通信设备450装置至少:接收第一CSI上报配置;接收第一信令;发送第一CSI;其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,所述第二通信设备450包括:一种存储计算机可读指令程序的存储器,所述计算机可读指令程序在由至少一个处理器执行时产生动作,所述动作包括:接收第一CSI上报配置;接收第一信令;发送第一CSI;其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,所述第一通信设备410包括:至少一个处理器以及至少一个存储器,所述至少一个存储器包括计算机程序代码;所述至少一个存储器和所述计算机程序代码被配置成与所述至少一个处理器一起使用。所述第一通信设备410装置至少:发送第一CSI上报配置;接收第一信令;接收第一CSI;其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,所述第一通信设备410包括:一种存储计算机可读指令程序的存储器,所述计算机可读指令程序在由至少一个处理器执行时产生动作,所述动作包括:发送第一CSI上报配置;接收第一信令;接收第一CSI;其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,本申请中的所述第一节点包括所述第二通信设备450。
作为一个实施例,本申请中的所述第二节点包括所述第一通信设备410。
作为一个实施例,{所述天线452,所述接收器454,所述接收处理器456,所述多天线接收处理器458,所述控制器/处理器459,所述存储器460,所述数据源467}中至少之一被用于接收本申请中的所述第一CSI上报配置;{所述天线420,所述发射器418,所述发射处理器416,所述多天线发射处理器471,所述控制器/处理器475,所述存储器476}中的至少之一被用于发送本申请中的所述第一CSI上报配置。
作为一个实施例,{所述天线452,所述接收器454,所述接收处理器456,所述多天线接收处理器458,所述控制器/处理器459,所述存储器460,所述数据源467}中至少之一被用于接收本申请中的所述第一信令;{所述天线420,所述发射器418,所述发射处理器416,所述多天线发射处理器471,所述控制器/处理器475,所述存储器476}中的至少之一被用于发送本申请中的所述第一信令。
作为一个实施例,{所述天线452,所述发射器454,所述发射处理器468,所述多天线发射处理器457,所述控制器/处理器459,所述存储器460}中的至少之一被用于发送本申请中的所述第一CSI;{所述天线420,所述接收器418,所述接收处理器470,所述多天线接收处理器472,所述控制器/处理器475,所述存储器476}中的至少之一被用于接收本申请中的所述第一CSI。
实施例5
实施例5示例了根据本申请的一个实施例的无线传输的流程图,如附图5所示。在附图5中,第一节点U01和第二节点N02分别是通过空中接口传输的两个通信节点。
对于第一节点U01,在步骤S5101中接收第一CSI上报配置;在步骤S5102中接收第一信令;在步骤S5103中发送第一CSI。
对于第二节点N02,在步骤S5201中发送第一CSI上报配置;在步骤S5202中发送第一信令;在步骤S5203中接收第一CSI。
在实施例5中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,所述第一信令所属的协议层是MAC层。
作为一个实施例,所述第一信令所属的协议层是MAC层,所述第一信令是MAC CE。
作为一个实施例,所述第一信令所属的协议层是物理层。
作为一个实施例,所述第一信令所属的协议层是物理层,所述第一信令是物理层信令。
作为一个实施例,所述第一信令所属的协议层是物理层,所述第一信令是DCI信令。
作为一个实施例,所述第一信令是小区公共(cell common)的。
作为一个实施例,所述第一信令是小区特有(cell specific)的。
作为一个实施例,所述第一信令是用户设备组公共(UE group common)的。
作为一个实施例,所述第一信令是用户设备组特有(UE group specific)的。
作为一个实施例,所述第一信令是用户设备特有(UE specific)的。
作为一个实施例,所述第一信令被用于更新或指示空间元素(spatial element)。
作为一个实施例,所述第一信令被用于更新或指示空间元素(spatial element)的数量。
作为一个实施例,所述第一信令被用于激活或去激活至少一个TCI(Transmission Configuration Indicator,传输配置指示)状态。
作为一个实施例,所述第一信令被用于激活至少一个TCI(Transmission Configuration Indicator,传输配置指示)状态。
作为一个实施例,所述第一信令被用于去激活至少一个TCI(Transmission Configuration Indicator,传输配置指示)状态。
作为一个实施例,所述第一信令被用于激活空间元素(spatial element)。
作为一个实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述第一信令被用于激活或去激活空间元素(spatial element)。
作为一个实施例,所述第一信令被用于激活或去激活空间元素(spatial element)的数量。
作为一个实施例,所述第一信令被用于激活空间元素(spatial element)的数量。
作为一个实施例,所述第一信令被用于去激活空间元素(spatial element)的数量。
作为一个实施例,所述空间要素包括TCI状态。
作为一个实施例,所述空间要素包括TCI状态,天线元素(antenna element),天线面板(antenna panel),天线端口(antenna port),逻辑(logical)天线端口,发送射频通道(TxRU,Transmit Radio Unit),发收节点(TRxP,Transmission Reception Point)中的至少之一。
作为一个实施例,所述第一信令被用于指示第一索引集合。
作为一个实施例,所述第一信令显式的指示第一索引集合。
作为一个实施例,所述第一信令隐式的指示第一索引集合。
作为一个实施例,所述第一信令直接指示第一索引集合。
作为一个实施例,所述第一信令间接指示第一索引集合。
作为一个实施例,所述第一索引集合包括一个索引。
作为一个实施例,所述第一索引集合包括至少一个索引。
作为一个实施例,所述第一索引集合包括多个索引。
作为一个实施例,所述第一索引集合中的任一索引是一个TCI状态索引。
作为一个实施例,所述第一索引集合中的任一索引是一个RS资源索引。
作为一个实施例,所述第一索引集合包括一个RS资源集合的索引。
作为一个实施例,所述第一索引集合中的任一索引是一个RS资源集合的索引。
作为一个实施例,所述第一索引集合包括一个coresetPoolIndex值。
作为一个实施例,所述第一索引集合中的任一索引是一个coresetPoolIndex值。
作为一个实施例,所述第一索引集合包括一个CORESET(Control resource set,控制资源集合)池(pool)的索引。
作为一个实施例,所述第一索引集合中的任一索引是一个CORESET(Control resource set,控制资源集合)池(pool)的索引。
作为一个实施例,所述第一索引集合中的任一索引是一个CORESET(Control resource set,控制资源集合)的索引。
典型的,所述第一索引集合包括仅一个索引,所述第一索引集合中的任一索引是所述第一索引集合。
典型的,一个CORESET池包括至少一个CORESET。
典型的,一个CORESET(Control resource set,控制资源集合)池(pool)的索引的取值范围包括0和1。
作为一个实施例,所述第一索引集合中的任一索引与空间元素有关。
作为一个实施例,所述第一索引集合中的任一索引被用于指示空间元素的调整。
作为一个实施例,所述第一索引集合中的任一索引被用于确定调整后的空间元素。
作为一个实施例,所述第一索引集合中的任一索引被用于指示调整后的空间元素。
作为一个实施例,所述第一索引集合中的任一索引是非负整数。
作为一个实施例,所述第一索引集合中的任一索引是整数。
作为一个实施例,所述第一索引集合中的任一索引是实数。
作为一个实施例,所述第一索引集合中的任一索引是一个标识。
作为一个实施例,所述第一索引集合中的任一索引是一个比特序列。
作为一个实施例,所述第一索引集合被用于指示目标RS资源集合。
作为一个实施例,所述第一索引集合中的任一索引对应至少一个RS资源。
作为一个实施例,所述第一索引集合被用于指示至少一个TCI状态,目标RS资源集合包括所述第一索引集合所指示的所述至少一个TCI状态所指示的至少一个RS资源。
作为一个实施例,所述第一索引集合中的任一索引是目标RS资源集合中的一个RS资源集合的索引。
作为一个实施例,目标RS资源集合包括所述第一索引集合中的每个索引所指示的至少一个RS资源。
作为一个实施例,所述第一索引集合中的任一索引是一个CORESET的索引,目标RS资源集合包括所述第一索引集合对应的CORESET(s)的TCI状态所指示的至少一个RS资源。
作为一个实施例,所述目标RS资源集合包括至少一个RS资源。
作为一个实施例,所述目标RS资源集合包括仅一个RS资源。
作为一个实施例,所述目标RS资源集合包括CSI-RS资源。
作为一个实施例,所述目标RS资源集合包括SS/PBCH块资源。
作为一个实施例,所述目标RS资源集合包括CSI-RS资源或者SS/PBCH块资源中的至少之一。
作为一个实施例,所述第一信令被用于去激活(deactivated)所述目标RS资源集合。
作为一个实施例,所述第一信令被用于激活(activated)所述目标RS资源集合。
作为一个实施例,所述第一信令被用于指示所述第一节点不被要求对所述目标RS资源集合进行测量。
作为一个实施例,作为接收所述第一信令的响应,所述第一节点不被要求对所述目标RS资源集合进行测量。
作为一个实施例,所述第一信令是DCI,所述第一信令中的一个域指示所述第一索引集合。
作为一个实施例,所述第一信令是DCI,所述第一信令中的多个域共同被用于指示所述第一索引集合。
作为一个实施例,“一个RS资源被去激活”的意思包括:所述第一节点不对所述一个RS资源进行测量。
作为一个实施例,“一个RS资源被去激活”的意思包括:所述第一节点不被要求对所述一个RS资源进行测量。
作为一个实施例,“一个RS资源被去激活”的意思包括:所述第一节点释放所述一个RS资源。
作为一个实施例,“一个RS资源被去激活”的意思包括:所述一个RS资源的QCL信息被更新。
作为一个实施例,“一个RS资源被去激活”的意思包括:所述第一节点认为所述一个RS资源不存在。
作为一个实施例,“一个RS资源被激活”的意思包括:所述第一节点对所述一个RS资源进行测量。
作为一个实施例,“一个RS资源被激活”的意思包括:所述第一节点认为所述一个RS资源存在。
作为一个实施例,所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一RS资源的准共址信息与所述第一索引集合无关;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一RS资源的准共址信息与所述第一索引集合有关。
作为一个实施例,所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源的准共址信息是所述第一索引集合所指示的所述至少一个TCI状态中的一个TCI状态;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源的准共址信息不属于所述第一索引集合所指示的所述至少一个TCI状态。
作为一个实施例,所述第一RS资源的准共址信息包括一个TCI状态;所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源的准共址信息是所述第一索引集合所指示的所述至少一个TCI状态中的一个TCI状态;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源的准共址信息不属于所述第一索引集合所指示的所述至少一个TCI状态。
作为一个实施例,所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源与所述第一索引集合指示的一个TCI状态所指示的一个RS资源是准共址;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第一RS资源与所述第一索引集合指示的任一TCI状态所指示的任一RS资源不是准共址。
作为一个实施例,所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第一RS资源是所述第一索引集合所指示的所述至少一个RS资源中的一个RS资源;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第一RS资源不属于所述第一索引集合所指示的所述至少一个RS资源。
作为一个实施例,所述句子“所述第一RS资源与所述第一索引集合关联”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第一RS资源与所述第一索引集合所指示的一个RS资源是准共址;所述句子“所述第一RS资源与所述第一索引集合不关联”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第一RS资源与所述第一索引集合所指示的一个RS资源不是准共址。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述两个RS资源的准共址参数相同;句子“两个RS资源不是准共址”的意思包括:所述两个RS资源的准共址参数不相同。
作为一个实施例,句子“所述两个RS资源的准共址参数不相同”的意思包括:所述第一节点不假设所述两个RS资源的准共址参数相同。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述第一节点设备假设相同的准共址参数被用于接收所述两个RS资源;句子“两个RS资源不是准共址”的意思包括:所述第一节点设备不假设相同的准共址参数被用于接收所述两个RS资源。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述第一节点设备假设相同的准共址参数被用于发送或接收所述两个RS资源;句子“两个RS资源不是准共址”的意思包括:所述第一节点设备不假设相同的准共址参数被用于发送或接收所述两个RS资源。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有相同的准共址特性;句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有不同的准共址特性。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有相同的空间接收参数(Spatial Rxparameter);句子“两个RS资源不是准共址”的意思包括:所述两个RS资源具有不同的空间接收参数。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有相同的准共址关系;句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有不同的准共址关系。
作为一个实施例,句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有相同的准共址假设;句子“两个RS资源是准共址”的意思包括:所述两个RS资源具有不同的准共址假设。
作为一个实施例,一个TCI状态指示至少一个RS资源及其中每个RS资源所对应的准共址参数的类型。
作为一个实施例,所述准共址参数的类型包括TypeA,TypeB,TypeC和TypeD。
作为一个实施例,类型为TypeA的准共址参数包括多普勒位移(Doppler shift),多普勒扩展(Doppler spread),平均延时(average delay),延时扩展(delay spread)。
作为一个实施例,类型为TypeB的准共址参数包括多普勒位移(Doppler shift),多普勒扩展(Doppler spread)。
作为一个实施例,类型为TypeC的准共址参数包括多普勒位移(Doppler shift),平均延时(average delay)。
作为一个实施例,类型为TypeD的准共址参数包括空间接收参数(Spatial Rx parameter)。
作为一个实施例,所述TypeA,所述TypeB,所述TypeC和所述TypeD的具体定义参见3GPP TS38.214的第5.1.5章节。
作为一个实施例,所述准共址参数包括延时扩展(delay spread),多普勒扩展(Doppler spread),多普勒位移(Doppler shift),平均延时(average delay),或空间接收参数(Spatial Rx parameter)中的一种或者多种。
作为一个实施例,所述准共址参数包括多普勒位移(Doppler shift),多普勒扩展(Doppler spread)。
作为一个实施例,所述准共址参数包括多普勒位移(Doppler shift),平均延时(average delay)。
作为一个实施例,所述准共址参数包括空间接收参数(Spatial Rx parameter)。
作为一个实施例,所述准共址参数包括空间发送参数或空间接收参数中的至少之一。
作为一个实施例,所述准共址参数包括空域接收滤波器(Spatial Domain Receive Filter)。
作为一个实施例,所述准共址参数包括空域滤波器(Spatial Domain Filter)。
作为一个实施例,所述准共址参数包括空域发送滤波器(spatial domain transmit filter)或空域接收滤波器中(spatial domain receive filter)的至少之一。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值被用于指示所述给定RS资源。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值被用于确定所述给定RS资源的索引。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值是所述给定RS资源在给定RS资源集合中的索引。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值是所述给定RS资源在给定RS资源集合中的排序。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值指示所述给定RS资源在给定RS资源集合中的位置。
作为一个实施例,句子“给定RS资源对应给定资源指示值”的意思包括:所述给定资源指示值指示所述给定RS资源是给定RS资源集合中的第几个RS资源。
作为一个实施例,所述给定RS资源是本申请中的所述第一RS资源,所述给定RS资源集合包括所述N个RS资源,所述给定资源指示值是所述第一资源指示的所述值。
作为一个实施例,所述给定RS资源是本申请中的所述第二RS资源,所述给定RS资源集合是包括所述第二RS资源的一个RS资源集合,所述给定资源指示值是所述第一资源指示的所述值。
作为一个实施例,所述给定RS资源是本申请中的所述N个RS资源中之一,所述给定RS资源集合包括所述N个RS资源,所述给定资源指示值是所述N个资源指示值中与所述给定RS资源对应的一个资源指示值。
典型的,一个RS资源的索引被用于标识所述一个RS资源。
作为一个实施例,所述N个资源指示值中存在一个资源指示值对应大于一个RS资源。
作为一个实施例,所述N个资源指示值中的任一资源指示值对应大于一个RS资源。
作为一个实施例,所述第一RS资源是否与所述第一索引集合关联被用于确定所述第一上报量的计算是否以所述第一RS资源为条件。
作为一个实施例,所述第一上报量的计算与所述第一RS资源是否与所述第一索引集合关联有关。
作为一个实施例,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件(conditioned on)。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活(deactivate)至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活(deactivate)至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为上述实施例的一个子实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
作为上述实施例的一个子实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件。
作为一个实施例,当且仅当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以所述第一RS资源为条件。
作为上述实施例的一个子实施例,所述第一信令被用于激活。
作为上述实施例的一个子实施例,所述第一信令被用于激活(activate)至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活(activate)至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活空间元素(spatial element)。
作为上述实施例的一个子实施例,当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的值是默认的。
作为上述实施例的一个子实施例,当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以第二RS资源为条件。
实施例6
实施例6示例了根据本申请的一个实施例的第一上报量的示意图;如附图6所示。
在实施例6中,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
作为一个实施例,当所述第一上报量的计算是以所述第一RS资源为条件时,所述第一资源指示被用于指示所述第一RS资源。
作为一个实施例,所述第一上报量的计算是以所述第一RS资源和第二RS资源中之一为条件的。
作为一个实施例,所述第一资源配置还被用于配置所述第二RS资源。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量或所述干扰测量中的至少所述信道测量计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量或所述干扰测量中的至少所述信道测量计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量,所述第一上报量是基于干扰测量和基于所述第一RS资源的所述信道测量,并且根据生成准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量,所述第一上报量是基于干扰测量和基于所述第二RS资源的所述信道测量,并且根据生成准则计算得到的;所述生成准则是最大传输容量,最大SINR,最小BLER(Block Error Rate,块错误率)中之一。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量,并且根据最大传输容量准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量,并且根据最大传输容量准则计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量,并且根据最大SINR准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量,并且根据最大SINR准则计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量,并且根据最小BLER准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量,并且根据最小BLER准则计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最大传输容量准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最大传输容量准则计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最大SINR准则计算得到的;所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最大SINR准则计算得到的。
作为一个实施例,所述句子“所述第一上报量的计算是以所述第一RS资源为条件”的意思包括:所述第一RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第一RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最小BLER准则计算得到的; 所述句子“所述第一上报量的计算是以所述第二RS资源为条件”的意思包括:所述第二RS资源被用于信道测量或干扰测量中的至少所述信道测量,所述第一上报量是至少基于所述第二RS资源的所述信道测量或所述干扰测量中的至少所述信道测量,并且根据最小BLER准则计算得到的。
实施例7
实施例7示例了根据本申请的另一个实施例的第一上报量的示意图;如附图7所示。
在实施例7中,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
作为一个实施例,当所述第一上报量的值是默认的时,所述第一资源指示的值是默认值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值是预留(reserved)。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值指示范围之外(out of range)。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值不指示一个整数。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值不指示一个数值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值是0。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值是1。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值是所述第一上报量的候选范围中的最小值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量的值是所述第一上报量的候选范围中的最差值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量是RI,所述第一上报量的值是1。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量是CQI,所述第一上报量的值是最小CQI值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量是L1-RSRP,所述第一上报量的值是最小L1-RSRP值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量是L1-SINR,所述第一上报量的值是最小L1-SINR值。
作为一个实施例,所述句子“所述第一上报量的值是默认的”的意思包括:所述第一上报量是PMI,所述第一上报量的值是最小PMI值。
实施例8
实施例8示例了根据本申请的另一个实施例的第一上报量的示意图;如附图8所示。
在实施例8中,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
作为一个实施例,当所述第一上报量的计算是以所述第二RS资源为条件时,所述第一资源指示被用于指示所述第二RS资源。
作为一个实施例,所述第一资源指示的所述值对应所述第一RS资源和所述第二RS资源。
作为一个实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件,所述第二RS资源与所述第一索引集合不关联。
作为一个实施例,所述第一上报量的计算是以所述第一RS资源为条件还是以第二RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,作为接收所述第一信令的响应,所述第一节点确定所述第一上报量的计算是以所述第一RS资源为条件还是以第二RS资源为条件。
作为一个实施例,所述第二RS资源是CSI-RS资源或者SS/PBCH块资源。
作为一个实施例,所述第二RS资源是CSI-RS资源。
作为一个实施例,所述第二RS资源是SS/PBCH块资源。
作为一个实施例,所述第二RS资源依赖所述第一索引集合。
作为一个实施例,所述第二RS资源依赖所述第一索引集合中的一个索引。
作为一个实施例,所述第二RS资源依赖所述第一索引集合中的至少一个索引。
作为一个实施例,所述第二RS资源和所述第一RS资源属于M1个RS资源集合中的同一个RS资源集合,M1是大于1的正整数。
作为上述实施例的一个子实施例,所述M1个RS资源集合是可配置的。
作为一个实施例,所述第二RS资源对应M2个索引中的一个索引,所述第一RS资源对应所述M2个索引中的一个索引,所述第二RS资源和所述第一RS资源对应所述M2个索引中的同一个索引,M2是大于1的正整数。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个RS资源集合的索引。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个TCI状态集合的索引。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个CORESET池的索引,一个CORESET池包括至少一个CORESET。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个功率控制闭环(closed loop)索引。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个功率控制环(loop)索引。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个功率控制调整状态索引(power control adjustment state index)。
作为上述实施例的一个子实施例,所述M2个索引分别是M2个sri-PUSCH-ClosedLoopIndex。
实施例9
实施例9示例了根据本申请的一个实施例的第二RS资源的示意图;如附图9所示。
在实施例9中,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
作为一个实施例,所述第一资源指示的所述值对应所述第一RS资源和所述第二RS资源。
作为一个实施例,所述第一RS资源和所述第二RS资源分别在所属的用于信道测量的RS资源集合中的索引相同,所述第一资源指示的所述值指示所述第一RS资源在所属的用于信道测量的RS资源集合中的索引。
作为一个实施例,所述第一RS资源和所述第二RS资源分别在所属的用于信道测量的RS资源集合中的排序相同,所述第一资源指示的所述值指示所述第一RS资源在所属的用于信道测量的RS资源集合中的排序。
作为一个实施例,所述第一RS资源和所述第二RS资源分别在所属的用于信道测量的RS资源集合中的位置相同,所述第一资源指示的所述值指示所述第一RS资源在所属的用于信道测量的RS资源集合中的位置。
作为一个实施例,所述第一RS资源是所属的用于信道测量的RS资源集合中的第i个RS资源,所述第二RS资源是所属的用于信道测量的RS资源集合中的第i个RS资源;所述第一资源指示的所述值指示所述i。
作为所述实施例的一个子实施例,所述i是正整数。
作为所述实施例的一个子实施例,所述i是非负整数。
作为所述实施例的一个子实施例,所述第一资源指示的所述值等于所述i。
作为所述实施例的一个子实施例,所述第一资源指示的所述值指示所述i加上1。
作为所述实施例的一个子实施例,所述第一资源指示的所述值指示所述i减去1。
作为一个实施例,所述第一资源配置还被用于配置所述第二RS资源。
作为一个实施例,所述第一CSI上报配置包括所述第一资源配置和第二资源配置,所述第一资源配置 被用于配置所述两个用于信道测量的RS资源集合中的包括所述第一RS资源的一个RS资源集合,所述第二资源配置被用于配置所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合。
典型的,所述第二资源配置是RRC IE中的名称包括resourcesForChannelMeasurement的域。
典型的,所述第二资源配置是RRC IE中的名称包括ChannelMeasurement的域。
典型的,所述第二资源配置是RRC IE CSI-ReportConfig中的名称包括resourcesForChannelMeasurement的域。
典型的,所述第二资源配置是RRC IE CSI-ReportConfig中的名称包括ChannelMeasurement的域。
典型的,所述第二资源配置和所述第二资源配置都属于RRC IE CSI-ResourceConfig。
典型的,所述第二资源配置和所述第二资源配置属于同一个RRC IE。
典型的,所述第二资源配置包括一个RRC IE中的部分域(field)。
作为一个实施例,所述第二资源配置包括所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合中的每个RS资源的索引。
作为一个实施例,所述第二资源配置包括所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合中的每个RS资源的配置信息。
作为一个实施例,所述第一RS资源的索引和所述第二RS资源的索引不同。
典型的,所述两个用于信道测量的RS资源集合中的包括所述第一RS资源的一个RS资源集合包括本申请中的所述N个RS资源。
作为一个实施例,所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合包括CSI-RS资源或者SS/PBCH块资源中的至少之一。
作为一个实施例,所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合包括仅SS/PBCH块资源。
作为一个实施例,所述两个用于信道测量的RS资源集合中的包括所述第二RS资源的一个RS资源集合包括仅CSI-RS资源。
实施例10
实施例10示例了根据本申请的另一个实施例的第二RS资源的示意图;如附图10所示。
在实施例10中,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
作为一个实施例,所述第二RS资源和所述第一RS资源占用相同的资源。
作为一个实施例,所述第二RS资源和所述第一RS资源占用相同的资源粒子(Resource Element,RE)。
作为一个实施例,所述第二RS资源和所述第一RS资源属于同一个NZP-CSI-RS资源索引所对应的NZP CSI-RS资源。
作为一个实施例,所述第二RS资源的索引和所述第一RS资源的索引是同一个NZP-CSI-RS资源索引。
作为一个实施例,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源和所述第一RS资源不是准共址。
实施例11
实施例11示例了根据本申请的一个实施例的第二RS资源的准共址信息的示意图;如附图11所示。
在实施例11中,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息。
作为一个实施例,一个RS资源的准共址信息包括一个TCI状态。
作为一个实施例,一个RS资源的准共址信息包括准共址参数。
作为一个实施例,一个RS资源的准共址信息包括一个TCI状态或者准共址参数中之一。
作为一个实施例,一个RS资源的准共址信息包括空域发送滤波器(spatial domain transmit filter)、空域接收滤波器、空间发送参数或空间接收参数中的至少之一。
实施例12
实施例12示例了根据本申请的另一个实施例的第二RS资源的准共址信息的示意图;如附图12所示。
在实施例12中,所述第二RS资源的准共址信息依赖所述第一索引集合。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源的准共址信息不是所述第一索引集合所指示的一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源的准共址信息是所述第一索引集合所指示的所述至少一个TCI状态之外的一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源与所述第一索引集合指示的所述至少一个TCI状态所指示的RS资源之外的一个RS资源是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源与所述第一索引集合指示的任一TCI状态所指示的任一RS资源不是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第二RS资源与所述第一索引集合所指示的RS资源之外的一个RS资源是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第二RS资源与所述第一索引集合所指示的任一RS资源不是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于去激活。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于去激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于去激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第二RS资源的准共址信息依赖所述第一索引集合中的一个索引。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第二RS资源的准共址信息依赖所述第一索引集合中的至少一个索引。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源的准共址信息是所述第一索引集合所指示的所述至少一个TCI状态中的一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个TCI状态,所述第二RS资源与所述第一索引集合指示的一个TCI状态所指示的一个RS资源是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于激活。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第二RS资源是所述第一索引集合所指示的所述至少一个RS资源中的一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活空间元素(spatial element)。
作为一个实施例,所述句子“所述第二RS资源的准共址信息依赖所述第一索引集合”的意思包括:所述第一索引集合被用于指示至少一个RS资源,所述第二RS资源与所述第一索引集合所指示的一个RS资源是准共址。
作为上述实施例的一个子实施例,所述第一信令被用于激活。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个RS资源。
作为上述实施例的一个子实施例,所述第一信令被用于激活至少一个TCI状态。
作为上述实施例的一个子实施例,所述第一信令被用于激活空间元素(spatial element)。
实施例13
实施例13示例了根据本申请的一个实施例的用于第一节点设备中的处理装置的结构框图;如附图13所示。在附图13中,第一节点设备中的处理装置1200包括第一接收机1201和第一发射机1202。
作为一个实施例,所述第一节点设备是用户设备。
作为一个实施例,所述第一节点设备是中继节点设备。
作为一个实施例,所述第一接收机1201包括实施例4中的{天线452,接收器454,接收处理器456,多天线接收处理器458,控制器/处理器459,存储器460,数据源467}中的至少之一。
作为一个实施例,所述第一发射机1202包括实施例4中的{天线452,发射器454,发射处理器468,多天线发射处理器457,控制器/处理器459,存储器460,数据源467}中的至少之一。
第一接收机1201,接收第一CSI上报配置;接收第一信令。
第一发射机1202,发送第一CSI。
在实施例12中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用 于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
作为一个实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
作为一个实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
作为一个实施例,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
作为一个实施例,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
作为一个实施例,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息;或者,所述第二RS资源的准共址信息依赖所述第一索引集合。
实施例14
实施例14示例了根据本申请的一个实施例的用于第二节点设备中的处理装置的结构框图;如附图14所示。在附图14中,第二节点设备中的处理装置1300包括第二发射机1301和第二接收机1302。
作为一个实施例,所述第二节点设备是基站备。
作为一个实施例,所述第二节点设备是用户设备。
作为一个实施例,所述第二节点设备是中继节点设备。
作为一个实施例,所述第二发射机1301包括实施例4中的{天线420,发射器418,发射处理器416,多天线发射处理器471,控制器/处理器475,存储器476}中的至少之一。
作为一个实施例,所述第二接收机1302包括实施例4中的{天线420,接收器418,接收处理器470,多天线接收处理器472,控制器/处理器475,存储器476}中的至少之一。
第二发射机1301发送第一CSI上报配置;发送第一信令。
第二接收机1302接收第一CSI。
在实施例13中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
作为一个实施例,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
作为一个实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
作为一个实施例,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
作为一个实施例,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
作为一个实施例,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
作为一个实施例,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息;或者,所述第二RS资源的准共址信息依赖所述第一索引集合。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可以通过程序来指令相关硬件完成,所述程序可以存储于计算机可读存储介质中,如只读存储器,硬盘或者光盘等。可选的,上述实施例的全部或部分步骤也可以使用一个或者多个集成电路来实现。相应的,上述实施例中的各模块单元,可以采用硬件形式实现,也可以由软件功能模块的形式实现,本申请不限于任何特定形式的软件和硬件的结合。本申请中的用户设备、终端和UE包括但不限于无人机,无人机上的通信模块,遥控飞机,飞行器,小型飞机,手机,平板电脑,笔记本,车载通信设备,无线传感器,上网卡,物联网终端,RFID终端,NB-IOT终端,MTC(Machine Type Communication,机器类型通信)终端,eMTC(enhanced MTC,增强的MTC)终端,数据卡,上网卡,车载通信设备,低成本手机,低成本平板电脑等无线通信设备。本申请中的基站或者***设备包括但不限于宏蜂窝基站,微蜂窝基站,家庭基站,中继基站,gNB(NR节点B)NR节点B,TRP(Transmitter Receiver Point,发送接收节点)等无线通信设备。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。基于说明书中所描述的实施例所做出的任何变化和修改,如果能获得类似的部分或者全部技术效果,应当被视为显而易见并属于本发明的保护范围。

Claims (10)

  1. 一种用于无线通信的第一节点设备,其特征在于,包括:
    第一接收机,接收第一CSI上报配置;接收第一信令;
    第一发送机,发送第一CSI;
    其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
  2. 根据权利要求1所述的第一节点设备,其特征在于,当且仅当所述第一RS资源与所述第一索引集合不关联时,所述第一上报量的计算是以所述第一RS资源为条件。
  3. 根据权利要求1或2所述的第一节点设备,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的值是默认的。
  4. 根据权利要求1或2所述的第一节点设备,其特征在于,当所述第一RS资源与所述第一索引集合关联时,所述第一上报量的计算是以第二RS资源为条件;所述第二RS资源对应所述第一资源指示的所述值。
  5. 根据权利要求4所述的第一节点设备,其特征在于,所述第一CSI上报配置被用于配置两个用于信道测量的RS资源集合,所述第一RS资源和所述第二RS资源分别属于所述两个用于信道测量的RS资源集合。
  6. 根据权利要求4所述的第一节点设备,其特征在于,所述第二RS资源和所述第一RS资源属于同一个RS资源索引所对应的RS资源,所述第二RS资源的准共址信息不同于所述第一RS资源的准共址信息。
  7. 根据权利要求4或6所述的第一节点设备,其特征在于,所述第一RS资源的准共址信息和所述第二RS资源的准共址信息属于所述第一RS资源的配置信息;或者,所述第二RS资源的准共址信息依赖所述第一索引集合。
  8. 一种用于无线通信的第二节点设备,其特征在于,包括:
    第二发射机,发送第一CSI上报配置;发送第一信令;
    第二接收机,接收第一CSI;
    其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
  9. 一种被用于无线通信的第一节点中的方法,其特征在于,包括:
    接收第一CSI上报配置;接收第一信令;
    发送第一CSI;
    其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
  10. 一种被用于无线通信的第二节点中的方法,其特征在于,包括:
    发送第一CSI上报配置;发送第一信令;
    接收第一CSI;
    其中,所述第一CSI包括第一资源指示和第一上报量;所述第一资源指示的值是N个资源指示值中之一,N是大于1的正整数;所述第一CSI上报配置包括第一资源配置,所述第一资源配置被用于配置N个RS资源,所述N个RS资源分别对应所述N个资源指示值,第一RS资源对应所述第一资源指示的所述值,所述第一RS资源是所述N个RS资源中之一;所述第一信令所属的协议层是RRC层之下的协议层,所述第一信令被用于确定第一索引集合;所述第一上报量的计算是否以所述第一RS资源为条件依赖于所述第一RS资源是否与所述第一索引集合关联。
PCT/CN2023/112233 2022-08-13 2023-08-10 一种被用于无线通信的节点中的方法和装置 WO2024037412A1 (zh)

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