WO2021147580A1 - 信息处理方法、装置、设备和存储介质 - Google Patents
信息处理方法、装置、设备和存储介质 Download PDFInfo
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Definitions
- This application relates to a wireless communication network, for example, to an information processing method, device, device, and storage medium.
- NR UE User Equipment, user equipment
- the base station knows the UE capability before it can do anything to the UE. Correct scheduling.
- the base station can configure resources related to the function for the UE according to the wireless capability information; if the UE’s wireless capability information does not include a certain function that the UE can support, then the base station This function cannot be configured for the UE.
- the base station forwards the UE’s wireless capability information to AMF (Access and Mobility Management Function), AMF
- AMF Access and Mobility Management Function
- the wireless capability information of the UE is stored for subsequent business use.
- NR low-complexity UE reduced capability NR devices
- gNB base stations all need to know what functions the NR low-complexity UE can support. Under the relevant standard state, the gNB cannot obtain the capabilities supported by the NR low-complexity UE.
- This application provides an information processing method, device, system and storage medium.
- the embodiment of the present application provides an information processing method, which is applied to a UE, and includes:
- the wireless capability information is sent to the gNB; where the wireless capability information includes UE capability information.
- the embodiment of the application provides an information processing method, which is applied to gNB, including:
- the embodiment of the present application provides an information processing method, which is applied to AMF, including:
- the wireless capability information of the UE is sent to the gNB; wherein the wireless capability information includes UE capability information.
- the embodiment of the present application provides an information processing device, which is applied to a UE, and includes:
- the sending module is used to send the wireless capability information to the gNB; wherein the wireless capability information includes UE capability information.
- the embodiment of the present application provides an information processing device, which is applied to a gNB, and includes:
- the receiving module is configured to receive wireless capability information of the UE; wherein, the wireless capability information includes UE capability information.
- the embodiment of the present application provides an information processing device, which is applied to AMF, and includes:
- the forwarding module is used to send the wireless capability information of the UE to the gNB;
- the wireless capability information includes UE capability information.
- An embodiment of the present application provides a device, which includes:
- One or more processors are One or more processors;
- Memory used to store one or more programs
- the one or more processors When the one or more programs are executed by the one or more processors, the one or more processors implement the information processing method according to any one of the embodiments of the present invention.
- the embodiment of the present application provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, the information processing method as described in any of the embodiments of the present invention is implemented.
- the technical solution of the embodiment of the present application by sending the wireless capability information including UE capability information to the gNB, realizes that the gNB obtains the capabilities supported by the UE, allocates relevant resources for the UE, realizes the corresponding functions of the UE, and ensures the availability of UE services. Improve the user experience.
- FIG. 1 is a flowchart of an information processing method provided by an embodiment of the present application
- FIG. 2 is a flowchart of another information processing method provided by an embodiment of the present application.
- Fig. 3 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 4 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- Fig. 5 is a flowchart of another information processing method provided by an embodiment of the present application.
- Fig. 6 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 7 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 8 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 9 is a schematic diagram of an R/LCID MAC sub-header provided by an embodiment of the present application.
- FIG. 10 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 11 is a flowchart of an information processing method provided by an embodiment of the present application.
- FIG. 12 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 13 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 14 is an exemplary diagram of an information processing method provided by an embodiment of the present application.
- FIG. 15 is a flowchart of an information processing method provided by an embodiment of the present application.
- FIG. 16 is a flowchart of an information processing method provided by an embodiment of the present application.
- FIG. 17 is a schematic structural diagram of an information processing device provided by an embodiment of the present application.
- FIG. 18 is a schematic structural diagram of another information processing device provided by an embodiment of the present application.
- FIG. 19 is a schematic structural diagram of another information processing device provided by an embodiment of the present application.
- FIG. 20 is a schematic structural diagram of a device provided by an embodiment of the present application.
- FIG. 1 is a flowchart of an information processing method provided by an embodiment of the present application.
- the embodiment of the present application is applicable to the case of uploading UE's NR low-complexity UE capability information.
- the method can be processed by the information in the embodiment of the present application.
- the device may be implemented by software and/or hardware, and is generally integrated in the UE.
- the method in the embodiment of the present application specifically includes the following steps:
- Step 101 Send wireless capability information to the gNB; where the wireless capability information includes UE capability information.
- the wireless capability information may be user equipment (User Equipment, UE) wireless capability information, and may include information such as the number of antennas, bandwidth, operating conditions, and processing delay.
- the gNB can be a 5G base station, and can configure resources according to the radio capability information uploaded by the UE to support the functions of the UE.
- the UE can send its own wireless capabilities to the gNB to implement the corresponding UE functions.
- the uploaded wireless capability information may include NR low complexity UE capability information, and the UE may be specifically an NR low complexity UE with corresponding NR low complexity UE capability information.
- the feature of the UE includes at least one of the following: reduced number of UE RX/TX antennas (Reduced number of UE RX/TX antennas), UE bandwidth reduction (UE Bandwidth reduction), half-duplex frequency division duplex FDD (Half-Duplex-Frequency Division Duplexing), relax UE processing delay (Relaxed UE processing time) and relax UE processing capability (Relaxed UE processing capability).
- the UE capability information is NR low-complexity UE capability information, including at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE radio frequency capability information and UE's measurement capability information.
- FIG. 2 is a flowchart of an information processing method provided by an embodiment of the present invention.
- the embodiment of the present application may be applicable to the case of uploading the NR low-complexity UE capability information of the UE.
- Step 201 Send the wireless capability information to the gNB through AMF.
- the wireless capability information of the UE may be sent to the gNB through the AMF, and the wireless capability information in the AMF may be information stored after the UE uploads.
- sending the wireless capability information to the gNB via AMF includes:
- Step 211 Establish a communication connection with the gNB, so that the gNB sends initial UE information to the AMF, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 212 The AMF sends an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- Step 213 Obtain radio resource control (Radio Resource Control, RRC) reconfiguration information determined by the gNB according to the NR low complexity UE capability information, where the RRC reconfiguration information includes at least one of the following: NR low complexity The measurement configuration information of the high-degree UE, the radio resource configuration information of the NR low-complexity UE, and the mobility control information of the NR low-complexity UE.
- RRC Radio Resource Control
- FIG 3 is an example diagram of an information processing method provided by an embodiment of this application.
- RRC MSG3, RRC MSG4, and RRC MSG5 establishes a communication link between the UE and gNB.
- the RRC MSG3 message can correspond to the Msg3 of the random access process
- the RRC MSG3 can be specifically the RRC connection request
- the RRC MSG4 message can be the Msg4, RRC corresponding to the random access process.
- MSG4 is the RRC connection establishment.
- the RRC MSG5 message does not carry any actual messages, and only serves the RRC layer confirmation function.
- RRC MSG5 is the RRC connection establishment.
- the gNB can send the initial UE message to the AMF.
- the UE radio capability information element (UE Radio Capability) that sends the initial context establishment request to the gNB contains the NR low-complexity UE capability information.
- the gNB can send RRC reconfiguration to the UE. Specifically, it can reconfigure the NR low complexity UE of the UE. Specifically, it can include the measurement configuration and NR of the NR low complexity UE. Low-complexity UE radio resource configuration and NR low-complexity UE mobility control.
- the gNB can actively query the NR low-complexity UE capability information supported by the UE, and send the wireless capability information to the gNB through the AMF, including:
- Step 221 Establish a communication connection with the gNB, so that the gNB sends initial UE information to the AMF, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 222 The AMF sends an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request does not include NR low-complexity UE capability information.
- Step 223 Receive UE capability query information issued by the gNB, and send wireless capability information including NR low-complexity UE capability information to the gNB; so that the gNB sends to the AMF according to the wireless capability information UE capability information indication, wherein the UE radio capability information element in the UE capability information indication includes NR low-complexity UE capability information.
- FIG. 4 is an example diagram of an information processing method provided by an embodiment of the present application.
- the AMF does not pass the need for gNB to actively query the UE to support NR low-complexity UE capability information, so as to realize the upload process of NR low-complexity UE capability information.
- the UE and gNB can be established through RRC MSG3, RRC MSG4 and RRC MSG5.
- the RRC MSG3 message can correspond to the Msg3 of the random access process
- the RRC MSG3 can specifically be the RRC connection request
- the RRC MSG4 message can be the Msg4 corresponding to the random access process
- the RRC MSG4 is the RRC connection establishment
- the RRC MSG5 message is not. Carry any actual message and only serve the function of RRC layer confirmation.
- RRC MSG5 completes the establishment of the RRC connection.
- the gNB can send an initial UE message to the AMF.
- the initial UE message can specifically include service request, attach request, and TAU.
- the AMF can send an initial context establishment request to the gNB.
- the NR low complexity capability information of the UE is not stored in the AMF, and the UE wireless capability information may not be included in the initial context establishment request.
- the gNB queries the UE capabilities. According to the query request, the UE can send the UE capability information containing the NR low-complexity UE capability information to the gNB, and then the gNB can send it to the AMF via the UE capability information indication. Store the NR low-complexity UE capability information of the UE.
- Fig. 5 is a flowchart of another information processing method provided by an embodiment of the present application.
- the embodiment of the present application is applicable to the case of uploading the NR low-complexity UE capability information of the UE. This method can be determined by the information in the embodiment of the present application.
- the processing device is executed, and the device may be implemented by software and/or hardware.
- the method in the embodiment of the present application specifically includes the following steps:
- Step 301 When sending the random access message 1, the wireless capability information is sent to the gNB through uplink RRC information; wherein, the random access message 1 is used for configuring a dedicated resource in an idle mode and includes a physical uplink shared channel.
- FIG. 6 is an example diagram of an information processing method provided by an embodiment of the present application.
- the UE may add NR low complexity UE capability information to the random access message when sending random access message 1 (Msg1)
- the random access message 1 can be a two-step physical random access channel (Physical Random Access Channel, PRACH) (two step prach).
- the resource configuration process includes a random access preamble (Preamble) and a physical uplink shared channel. (Physical Uplink Shared Channel, PUSCH) Msg1, and Msg1 including the Physical Uplink Shared Channel (PUSCH) used to pre-configure dedicated resources in idle mode.
- Preamble Physical Random Access Channel
- PUSCH Physical Uplink Shared Channel
- PUSCH Physical Uplink Shared Channel
- the random access message 1 may specifically be through the physical uplink
- the uplink RRC message or the Medium Access Control Channel Element (MAC CE) in the shared channel carries the capability information of the NR low-complexity UE to realize the explicit reporting of the UE's wireless capability information.
- MAC CE Medium Access Control Channel Element
- the sending the wireless capability information to the gNB includes:
- Step 311 Obtain System Information Block (SIB) information issued by the gNB, where the SIB information includes PRACH resource configuration information corresponding to the NR low-complexity UE, and the PRACH resource corresponding to the NR low-complexity UE
- the configuration information includes the uplink bandwidth part (Bandwidth part, BWP) common parameters and the PRACH resource configuration information dedicated to sending NR low-complexity UEs, or the PRACH resource configuration information corresponding to the NR low-complexity UE includes the PRACH resource configuration information dedicated to sending low NR Complexity UE configured uplink BWP configuration information and corresponding PRACH resource configuration information on the BWP.
- BWP Bandwidth part
- Step 312 Send the random access message 1 to the gNB, where the random access message 1 uses a random access preamble that is only used for NR low-complexity UEs to indicate the wireless capability information.
- FIG. 7 is an example diagram of an information processing method provided by an embodiment of the present application.
- the UE can send to the gNB by including the capability information of the NR low-complexity UE in the random access message 1, and the SIB message can be distinguished NR and NR low-complexity UE configuration of PRACH resources can implicitly determine the NR low-complexity UE capability information contained in the SIB message.
- the UE can send information that is only used for NR low-complexity UEs during the initiation of random access.
- the random access message 1 implicitly reports UE wireless capability information, which may include NR low-complexity UE capability information.
- each of the random access preambles corresponds to a control resource set (CORESET), where CORESET is used for The possible location of the downlink control channel is determined, and the radio capability information is represented by sending the random access preamble on the PRACH resource configured by the NR low-complexity UE.
- CORESET control resource set
- the NR-independent random access preamble is the NR low-complexity UE access
- the common parameter (BWP-UplinkCommon) of the uplink BWP can be used to send only the PRACH resource representation configured by the NR low-complexity UE.
- the UE uses any The way in which the preamble is sent in the preamble of a set of NR low complexity UE indicates that the UE is a low NR complexity UE.
- the UE may use the RRC message to report the capability information of the NR low-complexity UE when sending the random access message 1 (MSG1), and send the wireless capability information to the gNB, including:
- Step 321 Obtain the SIB information issued by the gNB, where the SIB information includes PRACH resource configuration information corresponding to the NR low-complexity UE, and the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP public parameters and dedicated For sending the PRACH resource configuration information of the NR low-complexity UE, or the PRACH resource configuration information corresponding to the NR low-complexity UE includes the uplink BWP configuration information dedicated to sending the NR low-complexity UE configuration and the corresponding BWP PRACH resource configuration information.
- Step 322 Send a random access message 3 to the gNB, where the random access message 3 includes wireless capability information.
- the radio capability information reflects the NR low-complexity UE capability information in at least one of the following ways:
- the random access message 3 explicitly includes the NR low-complexity UE capability information, which is embodied in at least one of the following ways:
- the radio capability information reflected in the random access message 3 may indicate the NR low-complexity UE capability information through MAC CE, and indicate the NR low-complexity UE capability information through MAC CE at least in one of the following ways:
- Use reserved/logical channel identifier (Reserved/Logical channel identifier, R/LCID) MAC subheader reserved bits to indicate the wireless capability information;
- the reserved value of LCID in the MAC subheader is used to indicate the wireless capability information.
- the use of the reserved value of LCID in the MAC subheader in the random access message 3 to indicate the wireless capability information includes:
- a dedicated LCID value is defined for the NR low-complexity UE, and the dedicated LCID value indicates both the random access message 3 related information and the radio capability information.
- the NR low-complexity UE capability information of the UE can be sent through random access message 3.
- the UE will initiate a random access procedure.
- the UE sends a random access message 1 (MSG1) to the gNB and accepts a random access message 2 (MSG2) sent by the gNB.
- MSG3 random access message 3
- the UE sends a random access message 3 (MSG3) to the gNB, it may upload the UE wireless capability information in the random access message 3.
- it may be NR low-complexity UE capability information.
- the method of sending the NR low-complexity UE capability information through the random access message 3 may include an explicit method and an implicit method, where the explicit sending includes at least one of the following methods:
- the UE uses a reserved bit in the information to distinguish between NR UE capability information and NR low-complexity UE capability information, that is, gNB judges according to the reserved bit value Whether it is an NR low-complexity UE; for example, in the RRC establishment request, when one bit reserved in the information is defined as 1, it indicates the capability information of the NR low-complexity UE;
- the establishment request, recovery request, and/or reestablishment request of NR UE, new RRC establishment request, resume request and/or reestablishment request for NR low-complexity UEs are newly added, and specific RRC for NR low-complexity UEs
- the establishment request, recovery request, and/or re-establishment request carry NR low-complexity UE capability information; for example, compared to the RRC establishment request of the NR UE, on the basis of which, one reserved bit is expanded to nine reserved bits,
- the RRC establishment request is defined as a dedicated RRC establishment request for the NR low-complexity UE, and then one of the nine reserved bits is defined as 1 to indicate the capability information of the NR low-complexity UE.
- any one of its two reserved bits can be used to distinguish between NR UE capability information and NR low-complexity UE capability information, that is, gNB Determine whether it is NR low-complexity UE capability information according to the reserved bit value in the R/LCID MAC sub-header; for example, in the R/LCID MAC sub-header, when the second reserved bit is defined as 1, it means that NR is low-complexity Information about the capabilities of the UE.
- the LCID value in the uplink shared channel may be as shown in the following table:
- the implicit transmission is embodied in the following way: for the reserved value of the LCID in the MAC subheader transmitted on the uplink shared channel, the reserved value is used to define a dedicated LCID for the random access message 3 of the NR low-complexity UE The gNB learns that the UE is a low-complexity UE based on the received dedicated LCID value.
- select MAC CE in LCID value Y means that NR low-complexity UE capability information and random access message 3 are transmitted on a common control channel (CCCH) with a size of 48 bits, and or, select the LCID value Z in MAC CE to indicate NR low-complexity UE capability information and random access message 3 are transmitted on a CCCH with a size of 64 bits, where Y and Z are any integer value from 33 to 51; it can also be defined by other values in the reserved value.
- CCCH common control channel
- select the LCID value Z in MAC CE to indicate NR low-complexity UE capability information and random access message 3 are transmitted on a CCCH with a size of 64 bits, where Y and Z are any integer value from 33 to 51; it can also be defined by other values in the reserved value.
- NR low-complexity UE is taken as an example, which is also suitable for high-performance terminals and terminals with limited capabilities.
- the resource corresponding to the Acknowledgement/Negative Acknowledgement (ACK/NACK) feedback information corresponding to the random access message 4 carries the NR low-complexity UE capability information, and the wireless capability information is sent to the gNB .
- the resource corresponding to the ACK/NACK feedback information corresponding to the random access message 4 carries the NR low-complexity UE capability information, which can be specifically implemented through the following steps:
- Step 331 The resource corresponding to the ACK/NACK feedback information corresponding to the random access message 4 is sent to the gNB to carry NR low-complexity UE capability information, and the feedback information of the random access message 4 includes wireless capability information.
- the resource corresponding to the ACK/NACK feedback information corresponding to the random access message 4 carries the wireless capability information, which specifically includes at least one of the following:
- the scrambling code or reference signal sequence corresponding to the ACK/NACK feedback information is used to indicate the wireless capability information.
- FIG. 10 is an example diagram of an information processing method provided by an embodiment of the present application.
- the UE can send the capability information of the NR low-complexity UE in the ACK/NACK feedback information of the random access message 4.
- gNB ACK/NACK feedback information of the random access message 4. It is understandable that there are three ways to send the NR low-complexity UE capability information through the feedback information of the random access message 4.
- the first method is to use the resource index corresponding to the ACK/NACK feedback information to indicate the The wireless capability information; the second method is to transmit the ACK/NACK feedback information and the information indicating the wireless capability to the gNB together through the physical uplink control channel; the third method is to use the scrambling code or reference corresponding to the ACK/NACK feedback information
- the signal sequence indicates the wireless capability information.
- FIG. 11 is a flowchart of an information processing method provided by an embodiment of the present application.
- the embodiment of the present application may be suitable for uploading the NR low-complexity UE capability information of the UE.
- the method can be processed by the information in the embodiment of the present application.
- the device can be implemented by software and/or hardware, and is generally integrated in the UE. Referring to FIG. 11, the method of the embodiment of the present application specifically includes the following steps:
- Step 401 Forward the wireless capability information to the target gNB through the source gNB.
- forwarding the wireless capability information to the target gNB through the source gNB includes:
- Step 411 Send handover request information to the target gNB through the source gNB, where the source-to-target transparent container cell of the handover request information includes NR low-complexity UE capability information.
- Step 412 After the resource admission qualification of the target gNB is obtained and the resource allocation based on the NR low-complexity UE capability is completed in the target gNB, the handover request confirmation message sent by the target gNB is received through the source gNB.
- the source gNB can store the NR low-complexity UE capability information reported by the UE, and when the source gNB sends to the target gNB In the handover request message (HANDOVER REQUEST), the NR low-complexity UE capability information of the UE can be added to the handover request information, which can be specifically added to the source to target transparent container (Source to Target Container) cell.
- HANDOVER REQUEST the handover request message
- the target gNB can send a handover request confirmation message (HANDOVER REQUEST ACKNOWLEDGE) to the source gNB, where the handover request confirmation can include the resources allocated by the target gNB according to the UE's NR low complexity UE capability information.
- HANDOVER REQUEST ACKNOWLEDGE a handover request confirmation message
- forwarding the wireless capability information to the target gNB through the source gNB includes:
- Step 421 Send handover request information to the AMF through the source gNB, and the AMF forwards the handover request information to the target gNB, where the source-to-target transparent container cell of the handover request information and the handover request information contains low NR. Complexity UE capability information.
- Step 422 After the resource admission qualification of the target gNB is obtained and the resource allocation based on the NR low-complexity UE capability is completed in the target gNB, the AMF forwards the handover request confirmation information sent by the target gNB by using the handover command. To the source gNB.
- the NR low-complexity UE capability information supported by the UE is delivered during the NG port handover as an example.
- the NR low complexity UE capability information of the UE can be By sending the source gNB and AMF to the target gNB, the source gNB can include the acquired NR low-complexity UE capability information of the UE in the handover request information (HANDOVER REQURED), which can be a source to target transparent container (Source to Transparent).
- the AMF can send a handover request message (HANDOVER REQUEST) to the target gNB, where the source to transparent container cell of the handover request message contains NR low complexity UE capability information, and the target The gNB can determine the UE’s resource access qualification in the target gNB according to the NR low-complexity UE capability information, and the target gNB sends a handover request confirmation message (HANDOVER REQUSET ACKNOWLEDGE) to the AMF.
- HANDOVER REQUEST the source to transparent container cell of the handover request message contains NR low complexity UE capability information
- HANDOVER REQUSET ACKNOWLEDGE a handover request confirmation message
- the resources allocated by the complexity capability information can then be sent by the AMF to the source gNB (HANDOVER COMMAND), where the target to source container (Target to Source Transparent Container) cell contains the target gNB that has been based on the low NR
- the resource allocation required by the complexity UE capability is completed.
- the number of the AMF includes at least one.
- FIG. 14 is an example diagram of an information processing method provided by an embodiment of the present application. Referring to FIG. 14, it will be described as an example to transfer UE capability information supporting NR low complexity UE when handover based on NG port and different AMF is used.
- the source gNB may send a handover request message (HANDOVER REQUIRED) to the source AMF, where the source to target transparent container (Source to Target Transparent Container) cell contains NR low complexity UE capability information.
- the source AMF sends a handover request message (HANDOVER REQUEST) to the target AMF, where the source to target container (Source to Target Transparent Container) cell contains NR low complexity UE capability information.
- the target AMF sends a handover request message (HANDOVER REQUEST) to the target gNB, where the source to target container (Source to Target Transparent Container) cell contains NR low-complexity UE capability information.
- the target gNB After obtaining the target gNB resource access qualification of the NR low-complexity UE, the target gNB sends a handover request confirmation message (HANDOVER REQUEST ACKNOWLEDGE) to the target AMF, in which the target to source container (Target to Source Transparent Container) cell contains the target
- HANDOVER REQUEST ACKNOWLEDGE the target to source container
- the target AMF sends a handover request acknowledgment message (HANDOVER REQUEST ACKNOWLEDGE) to the source AMF, where the target to source container (Target to Source Transparent Container) cell contains the resource allocation required by the target gNB based on the NR low-complexity UE capability.
- the source AMF sends a handover command message (HANDOVER COMMAND) to the source gNB, where the target-to-source container (Target to Source Transparent Container) cell contains the target gNB that has allocated resources required by the NR low-complexity UE capability.
- the technical solution of the embodiment of the present application sends the radio capability information including the capability information of the NR low-complexity UE to the gNB, so that the gNB obtains the capabilities supported by the UE, allocates relevant resources for the UE, and implements the corresponding functions of the UE, thereby ensuring the UE
- the availability of services improves the user experience.
- FIG. 15 is a flowchart of an information processing method provided by an embodiment of the present application.
- the embodiment of the present application may be suitable for uploading UE's NR low-complexity UE capability information.
- the method can be processed by the information in the embodiment of the present application.
- the device can be implemented by software and/or hardware, and is generally integrated in the gNB.
- the method in the embodiment of the present application specifically includes the following steps:
- Step 501 Receive wireless capability information of the UE; where the wireless capability information includes UE capability information.
- the feature of the UE includes at least one of the following: reducing the number of RX/TX antennas of the UE, reducing the UE bandwidth, half-duplex FDD, relaxing the UE processing delay, and relaxing the UE processing capability.
- the UE capability information is NR low-complexity UE capability information, including at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE robustness header compression (Robust Header Compression, ROHC) capability information, UE radio frequency capability information, and UE measurement capability information.
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE robustness header compression (Robust Header Compression, ROHC) capability information, UE radio frequency capability information, and UE measurement capability information.
- ROHC Robust Header Compression
- receiving the wireless capability information of the UE includes:
- the receiving wireless capability information issued by the AMF includes:
- Step 511 Establish a communication connection with the UE, and send initial UE information to the AMF, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 512 Obtain the initial context establishment request sent by the AMF, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- Step 513 Determine RRC reconfiguration information according to the NR low complexity UE capability information and deliver the RRC reconfiguration information to the UE, where the RRC reconfiguration information includes at least one of the following: NR low complexity The measurement configuration information of the high-degree UE, the radio resource configuration information of the NR low-complexity UE, and the mobility control information of the NR low-complexity UE.
- the receiving the wireless capability information issued by the AMF includes:
- Step 521 Establish a communication connection with the UE, and send initial UE information to the AMF, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 522 Obtain the initial context establishment request sent by the AMF, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- Step 523 Send the UE capability query information to the UE, and receive the radio capability information including the NR low-complexity UE capability information sent by the UE.
- Step 524 Send a UE capability information indication to the AMF according to the radio capability information, where the UE radio capability information element in the UE capability information indication includes NR low complexity UE capability information.
- the receiving radio capability information uploaded by the UE includes:
- Step 601 When the UE sends the random access message 1, obtain the radio capability information sent through the uplink RRC information; wherein, the random access message 1 is used to configure the dedicated resource including the physical uplink shared channel in the idle mode.
- receiving the wireless capability information of the UE includes:
- Receiv wireless capability information uploaded by the UE may further include:
- Step 701 Send SIB information to the UE, where the SIB information includes PRACH resource configuration information corresponding to the NR low-complexity UE, and the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP public parameters and dedicated to sending PRACH resource configuration information of the NR low-complexity UE, or the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP configuration information dedicated to sending the NR low-complexity UE configuration and the corresponding PRACH resource on the BWP Configuration information.
- Step 702 Receive a PRACH sent by a UE, where the PRACH is located in a PRACH resource set corresponding to the NR low-complexity UE.
- each of the random access preambles corresponds to a CORESET.
- the incoming preamble is sent on the PRACH resource configured by the NR low-complexity UE to represent the wireless capability information.
- receiving the wireless capability information uploaded by the UE includes:
- Step 801 Send SIB information to the UE, where the SIB information includes PRACH resource configuration information corresponding to the NR low-complexity UE, and the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP public parameters and dedicated to sending PRACH resource configuration information of the NR low-complexity UE, or the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP configuration information dedicated to sending the NR low-complexity UE configuration and the corresponding PRACH resource on the BWP Configuration information.
- Step 802 Obtain a random access message 3 sent by the UE, where the random access message 3 includes wireless capability information.
- the wireless capability information indicates the wireless capability information through the MAC CE in the random access message 3 in at least one of the following ways:
- the reserved value of the LCID in the MAC subheader to indicate the wireless capability information, where the reserved value defines a dedicated LCID value for NR low-complexity UEs, and the dedicated LCID value also indicates that the random access message 3 is related Information and wireless capability information.
- receiving the wireless capability information uploaded by the UE includes:
- Step 901 Forward the wireless capability information through the source gNB.
- the forwarding of wireless capability information through the source gNB includes:
- Step 911 Obtain the handover request information sent by the UE through the source gNB, where the source-to-target transparent container cell of the handover request information includes NR low-complexity UE capability information.
- Step 912 After determining the resource admission qualification of the target gNB of the UE and the resource allocation required by the NR low-complexity UE capability in the target gNB, the handover request confirmation information is forwarded to the UE through the source gNB.
- forwarding wireless capability information through the source gNB includes:
- Step 921 The UE sends the handover request information to the AMF through the source gNB, and obtains the handover request information forwarded by the AMF, where the source to target transparent container cell of the handover request information includes NR low-complexity UE capability information.
- Step 922 After determining the resource admission qualification of the target gNB of the UE and the resource allocation required by the NR low-complexity UE capability in the target gNB, the handover request confirmation information is forwarded to the target gNB through the AMF.
- the number of the AMF includes at least one.
- the technical solution of the embodiment of the present application realizes the resource allocation of the capabilities supported by the UE by receiving the radio capability information containing the NR low-complexity UE capability information sent by the UE, realizes the corresponding functions of the UE, ensures the availability of UE services, and improves The level of user experience is improved.
- FIG. 16 is a flowchart of an information processing method provided by an embodiment of the present application.
- the embodiment of the present application is applicable to the case of uploading UE's NR low-complexity UE capability information. This method can be processed by the information in the embodiment of the present application.
- the device can be implemented by software and/or hardware, and is generally integrated in the AMF.
- the method of the embodiment of the present application specifically includes the following steps:
- Step 1000 Send the wireless capability information of the UE to the gNB; where the wireless capability information includes UE capability information.
- the feature of the UE includes at least one of the following:
- the UE capability information is NR low-complexity UE capability information, including at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE radio frequency capability information and UE's measurement capability information.
- the sending the wireless capability information of the UE to the gNB includes:
- Step 1101 After the gNB establishes a communication connection with the UE, receive initial UE information sent by the gNB, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 1102 Send an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- Step 1103 so that the gNB determines RRC reconfiguration information according to the NR low complexity UE capability information, where the RRC reconfiguration information includes at least one of the following: NR low complexity UE measurement configuration information, NR low The radio resource configuration information of the complexity UE and the mobility control information of the NR low complexity UE.
- the sending the wireless capability information of the UE to the gNB includes:
- Step 1201 After the gNB establishes a communication connection with the UE, receive initial UE information sent by the gNB, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- Step 1202 Send an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- Step 1203 Obtain the UE capability information indication sent by the gNB, where the UE capability information indication is determined by the gNB by querying the UE capability query information of the UE, and the UE capability information element in the UE capability information indication includes low NR. Complexity capability information.
- the sending the wireless capability information of the UE to the gNB includes:
- Step 1301 Obtain the wireless capability information forwarded by the source gNB, and forward the wireless capability information to the target gNB.
- the acquiring the wireless capability information forwarded by the source gNB and forwarding the wireless capability information to the target gNB includes:
- Step 1311 Obtain the handover request information sent by the source gNB, where the source to target transparent container cell of the handover request information includes NR low-complexity UE capability information.
- Step 1312. Forward the handover request information to the target gNB.
- Step 1313 After the UE has obtained the resource access qualification of the target gNB and the resource required by the NR low-complexity UE capability has been allocated in the target gNB, the handover request confirmation information sent by the target gNB is forwarded to the target gNB using the handover command.
- the source gNB After the UE has obtained the resource access qualification of the target gNB and the resource required by the NR low-complexity UE capability has been allocated in the target gNB, the handover request confirmation information sent by the target gNB is forwarded to the target gNB using the handover command.
- the source gNB After the UE has obtained the resource access qualification of the target gNB and the resource required by the NR low-complexity UE capability has been allocated in the target gNB, the handover request confirmation information sent by the target gNB is forwarded to the target gNB using the handover command.
- the source gNB After the UE has obtained the resource access qualification of the target gNB and the resource required
- the obtaining the wireless capability information forwarded by the source gNB and forwarding the wireless capability information to the target gNB further includes: step 1321, obtaining the handover request information forwarded by the source gNB through the source AMF, and The handover request information is forwarded to the target gNB, where the source-to-target transparent container cell of the handover request information includes NR low-complexity UE capability information.
- Step 1322 After the UE has obtained the resource admission qualification of the target gNB and the resource required by the NR low-complexity UE capability has been allocated in the target gNB, the handover request confirmation message sent by the target gNB is passed through the source AMF. Forward to the source gNB.
- the technical solution of the embodiment of the present application sends the radio capability information including the capability information of the NR low-complexity UE to the gNB, so that the gNB obtains the capabilities supported by the UE, allocates relevant resources for the UE, and implements the corresponding functions of the UE, thereby ensuring the UE
- the availability of services improves the user experience.
- FIG. 17 is a schematic structural diagram of an information processing device provided by an embodiment of the present application, which can execute the information processing method provided by any embodiment of the present application, and has functional modules and beneficial effects corresponding to the execution method.
- the device can be implemented by software and/or hardware, and generally can be integrated in the UE, specifically including:
- the sending module 1 is used to send the wireless capability information to the gNB;
- the wireless capability information includes UE capability information.
- the wireless capability information including the capability information of the NR low-complexity UE is sent to the gNB through the sending module, so that the gNB can obtain the capabilities supported by the UE, allocate relevant resources for the UE, and realize the corresponding functions of the UE. This improves the usability of UE services and improves user experience.
- the characteristics of the UE in the sending module 1 include at least one of the following: reducing the number of UE RX/TX antennas, reducing UE bandwidth, half-duplex FDD, relaxing UE processing delay, and relaxing UE processing capabilities .
- the NR low-complexity wireless capability information in the sending module 1 includes at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE radio frequency capability information and UE's measurement capability information.
- the sending module 1 includes:
- the feedback response unit is configured to receive the UE capability query information issued by the gNB, and send the radio capability information including the NR low-complexity UE capability information to the gNB.
- the sending module 1 includes:
- the AMF sending unit is used to send the wireless capability information to the gNB through AMF.
- the AMF sending unit is specifically used for:
- the gNB Establish a communication connection with the gNB, so that the gNB sends initial UE information to the AMF, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information; Sending an initial context establishment request, wherein the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information; acquiring the RRC reconfiguration information determined by the gNB according to the NR low-complexity UE capability information, Wherein, the RRC reconfiguration information includes at least one of the following: measurement configuration information of an NR low-complexity UE, radio resource configuration information of an NR low-complexity UE, and mobility control information of an NR low-complexity UE.
- the AMF sending unit is also specifically used for:
- the AMF sends a UE capability information indication, where the UE radio capability information element in the UE capability information indication includes NR low-complexity capability information.
- the sending module 1 further includes:
- the access message unit is used to send the radio capability information to the gNB through uplink RRC information when sending the random access message 1; wherein, the random access message 1 is used to configure dedicated resources when the random access message 1 is in idle mode.
- Uplink shared channel Uplink shared channel.
- the sending module 1 further includes:
- the first SIB information unit is used to obtain the SIB information issued by the gNB, where the SIB information includes PRACH resource configuration information corresponding to the NR low-complexity UE, and the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP common parameters and PRACH resource configuration information dedicated to sending NR low-complexity UEs, or the PRACH resource configuration information corresponding to the NR low-complexity UE includes uplink BWP configuration information dedicated to sending NR low-complexity UE configurations and all The corresponding PRACH resource configuration information on the BWP; the random access message 1 is sent to the gNB.
- the random access preamble of the random access message 1 in the access message unit is at least one set, and each of the random access preambles corresponds to a CORESET, and when the NR is low
- the PRACH resource configuration information corresponding to the complexity UE includes the random access preamble representing the radio capability information.
- the sending module 1 further includes:
- the second SIB information unit is configured to send a random access message 3 to the gNB, and the random access message 3 includes wireless capability information.
- the wireless capability information in the second SIB information unit reflects the NR low-complexity UE capability information in the random access message 3 in at least one of the following ways:
- the RRC setup request, recovery request, and/or reestablishment request dedicated to the NR low-complexity UE are used to carry the NR low-complexity UE capability information.
- the MAC CE in the random access message 3 may also indicate the NR low-complexity UE capability information, which is reflected in at least one of the following ways:
- the reserved value of the LCID in the MAC subheader is used to indicate the wireless capability information.
- the use of the reserved value of LCID in the MAC subheader in the random access message 3 to indicate the wireless capability information includes:
- the sending module 1 further includes:
- the resource corresponding to the ACK/NACK feedback information corresponding to the random access message 4 sent to the gNB carries NR low-complexity UE capability information, and the feedback information of the random access message 4 includes wireless capability information.
- the radio capability information reflecting the NR low-complexity UE capability information through the ACK/NACK feedback information corresponding to the random access message 4 includes at least one of the following methods:
- the scrambling code or reference signal sequence corresponding to the ACK/NACK feedback information is used to indicate the wireless capability information.
- the sending module 1 further includes:
- the base station sending unit is used to forward the wireless capability information to the target gNB through the source gNB.
- the base station transmitting unit is specifically used for:
- the handover request confirmation message sent by the target gNB is received through the source gNB.
- the base station transmitting unit is specifically used for:
- the source gNB sends handover request information to the AMF, and the AMF forwards the handover request information to the target gNB, where the source-to-target transparent container cell of the handover request information and the handover request information includes NR low-complexity UE Capability information
- the AMF After obtaining the resource access qualification of the target gNB and the resource allocation required by the NR-based low-complexity UE capability has been completed in the target gNB, the AMF forwards the handover request confirmation information sent by the target gNB to the target gNB using a handover command.
- Source gNB After obtaining the resource access qualification of the target gNB and the resource allocation required by the NR-based low-complexity UE capability has been completed in the target gNB, the AMF forwards the handover request confirmation information sent by the target gNB to the target gNB using a handover command.
- Source gNB Source gNB.
- the number of AMFs in the base station sending unit includes at least one.
- FIG. 18 is a schematic structural diagram of an information processing device provided by an embodiment of the present application, which can execute the information processing method provided by any embodiment of the present application, and has functional modules and beneficial effects corresponding to the execution method.
- the device can be implemented by software and/or hardware, and generally can be integrated in the gNB, specifically including:
- the receiving module 2 is configured to receive wireless capability information uploaded by the UE; wherein, the wireless capability information includes UE capability information.
- the technical solution of the embodiment of the present application receives the radio capability information containing the NR low-complexity UE capability information sent by the UE through the receiving module, realizes the resource allocation of the capabilities supported by the UE, realizes the corresponding functions of the UE, and ensures the availability of the UE service , Improve the user experience.
- the characteristics of the UE in the receiving module 2 include at least one of the following: reducing the number of UE RX/TX antennas, reducing UE bandwidth, half-duplex FDD, relaxing UE processing delay, and relaxing UE processing capabilities .
- the UE capability information in the receiving module 2 is NR low-complexity UE capability information, including at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE radio frequency capability information and UE's measurement capability information.
- the receiving module 2 includes:
- the AMF receiving unit is used to receive the wireless capability information sent by the UE through the AMF.
- the AMF receiving unit is specifically used for:
- the initial UE information includes at least one of service request information, attachment request information, and TAU request information;
- the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information
- the RRC reconfiguration information includes at least one of the following: NR low complexity UE Measurement configuration information, radio resource configuration information of NR low-complexity UE, and mobility control information of NR low-complexity UE.
- the AMF receiving unit is also specifically used for:
- the initial UE information includes at least one of service request information, attachment request information, and TAU request information;
- the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information
- the AMF Send a UE capability information indication to the AMF according to the wireless capability information, where the UE wireless capability information element in the UE capability information indication includes NR low-complexity capability information.
- the receiving module 2 further includes:
- the access message unit is used to obtain the radio capability information sent through uplink RRC information when the UE sends the random access message 1; wherein, the random access message 1 is used to configure dedicated resources in idle mode, including physical uplink sharing channel.
- the access module 2 further includes:
- the first SIB receiving unit is configured to send SIB information to the UE, where the SIB information corresponds to the NR low-complexity UE configuring PRACH resources, and the NR low-complexity UE configuring PRACH resources is dedicated to sending NR among the uplink BWP public parameters
- each of the random access preambles corresponds to a CORESET.
- the random access preamble is sent on the PRACH resource configured by the NR low-complexity UE to represent the wireless capability information.
- the receiving module 2 further includes:
- the second SIB receiving unit is configured to send SIB information to the UE, where the SIB information corresponds to the NR low-complexity UE configuration PRACH resource, and the NR low-complexity UE configuration PRACH resource is dedicated to sending NR among the uplink BWP common parameters PRACH resource configured by a low-complexity UE, or dedicated to sending uplink BWP parameters configured by a low-complexity UE with NR and the corresponding PRACH resource on the BWP; acquiring random access message 3 sent by the UE, the random access message 3 includes wireless capability information.
- the wireless capability information in the second SIB receiving unit reflects the NR low-complexity UE capability information in at least one of the following ways:
- the random access message 3 explicitly includes the NR low-complexity UE capability information, which is embodied in at least one of the following ways:
- the MAC CE in the random access message 3 indicates the capability information of the NR low-complexity UE, which is embodied in at least one of the following ways:
- a dedicated LCID value is defined for the NR low-complexity UE, and the dedicated LCID value indicates both the random access message 3 related information and the radio capability information.
- the receiving module 2 further includes:
- the resource corresponding to the ACK/NACK feedback information corresponding to the random access message 4 sent to the gNB carries NR low-complexity UE capability information, and the feedback information of the random access message 4 includes wireless capability information.
- the radio capability information reflects the NR low-complexity UE capability information in at least one of the following ways:
- the scrambling code or reference signal sequence corresponding to the ACK/NACK feedback information is used to indicate the wireless capability information.
- the receiving module 2 includes:
- the base station receiving module is used to forward wireless capability information through the source gNB.
- the base station receiving module is specifically used for:
- the source to target transparent container cell of the handover request information includes NR low-complexity UE capability information
- the handover request confirmation information is forwarded to the UE through the source gNB.
- the base station receiving module is also specifically used for:
- the UE sends handover request information to the AMF through the source gNB, and obtains the handover request information forwarded by the AMF, where the source-to-target transparent container cell of the handover request information and the handover request information includes NR low-complexity UE capability information;
- the handover request confirmation information is forwarded to the target gNB through the AMF.
- the number of the AMF in the receiving module of the base station includes at least one.
- FIG. 19 is a schematic structural diagram of an information processing device provided by an embodiment of the present application, which can execute the information processing method provided by any embodiment of the present application, and has functional modules and beneficial effects corresponding to the execution method.
- the device can be implemented by software and/or hardware, and generally can be integrated in AMF, specifically including:
- the forwarding module 3 is used to send the wireless capability information of the UE to the gNB; wherein, the wireless capability information includes NR low-complexity UE capability information.
- the wireless capability information including the capability information of the NR low-complexity UE is sent to the gNB through the forwarding module 3, so that the gNB can obtain the capabilities supported by the UE, allocate related resources for the UE, and implement the corresponding functions of the UE.
- the usability of the UE service is guaranteed, and the user experience is improved.
- the characteristics of the UE in the forwarding module 3 include at least one of the following:
- the NR low-complexity UE capability information in the forwarding module 3 includes at least one of the following:
- NR low complexity UE category information NR low complexity UE support indication information, NR low complexity UE receiving capability information, NR low complexity UE upload capability information, UE transmission capability information, UE radio frequency capability information and UE's measurement capability information.
- the forwarding module 3 includes: an information receiving unit, configured to receive initial UE information sent by the gNB after the gNB establishes a communication connection with the UE, wherein the initial UE information includes at least a service request One of information, attachment request information, and TAU request information.
- the request sending unit is configured to send an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- the configuration unit is configured to enable the gNB to determine RRC reconfiguration information according to the NR low-complexity UE capability information, where the RRC reconfiguration information includes at least one of the following: measurement configuration information of the NR low-complexity UE, NR low-complexity UE radio resource configuration information and NR low-complexity UE mobility control information.
- the forwarding module 3 includes:
- the initial unit is configured to receive initial UE information sent by the gNB after the gNB establishes a communication connection with the UE, where the initial UE information includes at least one of service request information, attachment request information, and TAU request information.
- the establishment request unit is configured to send an initial context establishment request to the gNB, where the UE radio capability information element of the initial context establishment request includes NR low-complexity UE capability information.
- the information acquiring unit is configured to acquire the UE capability information indication sent by the gNB, where the UE capability information indication is determined by the gNB by querying the UE capability query information of the UE, and the UE capability information element in the UE capability information indication Includes NR low-complexity capability information.
- the forwarding module 3 includes:
- the base station forwarding unit is used to obtain the wireless capability information forwarded by the source gNB, and forward the wireless capability information to the target gNB.
- the base station forwarding unit is specifically used for:
- the handover request confirmation message sent by the target gNB is forwarded to the source gNB.
- the base station forwarding unit is also specifically used for:
- the source gNB Obtain the handover request information forwarded by the source gNB through the source AMF, and forward the handover request information to the target gNB, where the source-to-target transparent container cell of the handover request information and the handover request information includes NR low-complexity UE Capability information
- the handover request confirmation message sent by the target gNB is passed through the source AMF using the handover command Forward to the source gNB.
- FIG. 20 is a schematic structural diagram of a device provided by an embodiment of the present application.
- the device includes a processor 10, a memory 11, an input device 12, and an output device 13.
- the number of processors 10 in the device may be one Or more, one processor 10 is taken as an example in FIG. 20; the device processor 10, the memory 11, the input device 12, and the output device 13 may be connected by a bus or other means.
- a bus connection is taken as an example.
- the memory 11 can be used to store software programs, computer-executable programs, and modules, such as the modules corresponding to the information processing device in the embodiment of the present application (transmitting module 1, receiving module 2, or forwarding module 3) .
- the processor 10 executes various functional applications and data processing of the device by running the software programs, instructions, and modules stored in the memory 11, that is, realizes the above-mentioned information processing method.
- the memory 11 may mainly include a program storage area and a data storage area.
- the program storage area may store an operating system and an application program required by at least one function; the data storage area may store data created according to the use of the terminal.
- the memory 11 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state storage devices.
- the memory 11 may further include a memory remotely provided with respect to the processor 10, and these remote memories may be connected to the device through a network. Examples of the aforementioned networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof.
- the input device 12 can be used to receive inputted numeric or character information, and generate key signal input related to user settings and function control of the device.
- the output device 13 may include a display device such as a display screen.
- An embodiment of the present application also provides a storage medium containing computer-executable instructions, which are used to execute an information processing method when the computer-executable instructions are executed by a computer processor, and the method includes:
- the wireless capability information includes NR low-complexity UE capability information.
- the wireless capability information of the UE is sent to the gNB; wherein the wireless capability information includes UE capability information.
- An embodiment of the present application provides a storage medium containing computer-executable instructions.
- the computer-executable instructions are not limited to the method operations described above, and can also perform related operations in the information processing method provided in any embodiment of the present invention. .
- user terminal encompasses any suitable type of wireless user equipment, such as a mobile phone, a portable data processing device, a portable web browser, or a vehicle-mounted mobile station.
- the various embodiments of the present application can be implemented in hardware or dedicated circuits, software, logic or any combination thereof.
- some aspects may be implemented in hardware, while other aspects may be implemented in firmware or software that may be executed by a controller, microprocessor, or other computing device, although the application is not limited thereto.
- Computer program instructions can be assembly instructions, Instruction Set Architecture (ISA) instructions, machine instructions, machine-related instructions, microcode, firmware instructions, state setting data, or written in any combination of one or more programming languages Source code or object code.
- ISA Instruction Set Architecture
- the block diagram of any logic flow in the drawings of the present application may represent program steps, or may represent interconnected logic circuits, modules, and functions, or may represent a combination of program steps and logic circuits, modules, and functions.
- the computer program can be stored on the memory.
- the memory can be of any type suitable for the local technical environment and can be implemented using any suitable data storage technology, such as but not limited to read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), optical Memory devices and systems (Digital Video Disk (DVD) or Portable Compact Disc (CD)), etc.
- Computer-readable media may include non-transitory storage media.
- the data processor can be any type suitable for the local technical environment, such as but not limited to general-purpose computers, special-purpose computers, microprocessors, digital signal processors (Digital Signal Processors, DSP), application specific integrated circuits (ASICs) ), programmable logic devices (Field Programmable Gate Array, FPGA), and processors based on multi-core processor architecture.
- DSP Digital Signal Processors
- ASICs application specific integrated circuits
- FPGA Field Programmable Gate Array
- processors based on multi-core processor architecture such as but not limited to general-purpose computers, special-purpose computers, microprocessors, digital signal processors (Digital Signal Processors, DSP), application specific integrated circuits (ASICs) ), programmable logic devices (Field Programmable Gate Array, FPGA), and processors based on multi-core processor architecture.
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Abstract
Description
Claims (28)
- 一种信息处理方法,应用于用户设备UE,包括:将无线能力信息发送到基站gNB;其中,所述无线能力信息包括UE能力信息。
- 根据权利要求1所述的方法,其中,所述UE的特征包括以下至少一种:降低UE接收/发射RX/TX天线数量、降低UE带宽、半双工频分双工FDD、放松UE处理时延和放松UE处理能力。
- 根据权利要求1所述的方法,其中,所述UE能力信息为新无线接入技术NR低复杂度UE能力信息,所述NR低复杂度UE能力信息包括以下至少一种:NR低复杂度UE的类别信息、NR低复杂度UE的支持指示信息、NR低复杂度UE的接收能力信息、NR低复杂度UE的上传能力信息、UE传输能力信息、UE的射频能力信息和UE的测量能力信息。
- 根据权利要求1所述的方法,其中,所述将无线能力信息发送到gNB,包括:接收所述gNB下发的UE能力查询信息,并向所述gNB发送包含NR低复杂度UE能力信息的无线能力信息。
- 根据权利要求1所述的方法,其中,所述将无线能力信息发送到gNB,包括:在发送随机接入消息1的情况下,将所述无线能力信息通过上行无线资源控制RRC信息发送到所述gNB;其中,所述随机接入消息1用于空闲模式时配置包含物理上行共享信道的专用资源。
- 根据权利要求1所述的方法,其中,所述将无线能力信息发送到gNB,包括:获取所述gNB下发的***信息块SIB信息,其中,所述SIB信息包括NR低复杂度UE对应的物理随机接入信道PRACH资源配置信息,所述NR低复杂度UE对应的PRACH资源配置信息包括上行带宽部分BWP公共参数和专用于发送NR低复杂度UE的PRACH资源配置信息,或者,所述NR低复杂度UE对应的PRACH资源配置信息包括专用于发送NR低复杂度UE配置的上行BWP配置信息和所述上行BWP上对应的PRACH资源配置信息;将随机接入消息1发送到所述gNB。
- 根据权利要求6所述的方法,其中,所述随机接入消息1的随机接入前导码为至少一套,在随机接入前导码为多套的情况下,多套所述随机接入前导码分别对应一个控制资源集合CORESET中,在NR低复杂度UE对应的PRACH资源配置信息中包括表示所述无线能力信息的所述随机接入前导码。
- 根据权利要求1所述的方法,其中,所述将无线能力信息发送到gNB,包括:向所述gNB发送随机接入消息3,所述随机接入消息3中包括所述无线能力信息。
- 根据权利要求8所述的方法,其中,所述随机接入消息3包含NR低复杂度UE能力信息,通过如下至少一种方式体现:利用以下至少之一中的预留比特bit指示所述无线能力信息:RRC建立请求、恢复请求、或重建请求;利用专用于NR低复杂度UE的以下至少之一携带所述无线能力信息:RRC建立请求、恢复请求、或重建请求。
- 根据权利要求8所述的方法,其中,所述随机接入消息3中包括所述无线能力信息,通过所述随机接入消息3中的媒体介入控制信道单元MAC CE指示所述无线能力信息,通过所述随机接入消息3中的MAC CE指示所述无线能力信息包括如下至少一种方式:利用保留/逻辑信道标识符R/LCID MAC子头中预留bit指示所述无线能力信息;利用MAC子头中逻辑信道标识符LCID的预留值指示所述无线能力信息。
- 根据权利要求10所述的方法,其中,在所述随机接入消息3中利用MAC子头中LCID的预留值指示所述无线能力信息,包括:为NR低复杂度UE定义专用的LCID值,所述专用的LCID值同时指示随机接入消息3相关信息和所述无线能力信息。
- 根据权利要求1所述的方法,其中,所述将无线能力信息发送到gNB,包括:通过随机接入消息4对应的确认/否定确认ACK/NACK反馈信息所对应的资源携带所述无线能力信息。
- 根据权利要求12所述的方法,其中,所述通过随机接入消息4对应的ACK/NACK反馈信息所对应的资源携带所述无线能力信息,包括以下至少之一:利用所述ACK/NACK反馈信息所对应的资源索引指示所述无线能力信息;将所述ACK/NACK反馈信息和所述无线能力信息通过物理上行控制信道一起传输给所述gNB;利用所述ACK/NACK反馈信息所对应的扰码或参考信号序列指示所述无线能力信息。
- 一种信息处理方法,应用于基站gNB,包括:接收用户设备UE的无线能力信息;其中,所述无线能力信息包括UE能力信息。
- 根据权利要求14所述的方法,其中,所述接收UE的无线能力信息,包括:接收接入和移动性管理功能AMF下发的无线能力信息。
- 根据权利要求15所述的方法,其中,所述接收AMF下发的无线能力信息,包括:通过源gNB向所述AMF发送切换要求信息,由所述AMF将切换请求信息转发到目标gNB,其中,所述切换要求信息和所述切换请求信息的源到目标透明容器信元包含新无线接入技术NR低复杂度UE能力信息;在获得所述目标gNB的资源准入资格和所述目标gNB中已将基于NR低复杂度UE能力所需要的资源分配完成后,由所述AMF将所述目标gNB发送的切换请求确认信息利用切换命令转发到所述源gNB。
- 根据权利要求14所述的方法,其中,所述接收UE的无线能力信息,包括:接收UE上传的无线能力信息。
- 根据权利要求17所述的方法,其中,所述接收UE上传的无线能力信息,包括:在所述UE发送随机接入消息1的情况下,获取通过上行无线资源控制RRC信息发送的无线能力信息;其中,所述随机接入消息1用于空闲模式时配置专用资源的包含物理上行共享信道。
- 根据权利要求17所述的方法,其中,所述接收UE上传的无线能力信息,包括:向所述UE发送***信息块SIB信息,其中,所述SIB信息包括NR低复杂度UE对应的物理随机接入信道PRACH资源配置信息,所述NR低复杂度UE 对应的PRACH资源配置信息包括上行带宽部分BWP公共参数和专用于发送NR低复杂度UE配置的PRACH资源配置信息,或者,所述NR低复杂度UE对应的PRACH资源配置信息包括专用于发送NR低复杂度UE配置的上行BWP配置信息和所述上行BWP上对应的PRACH资源配置信息;接收所述UE发送的PRACH,其中,所述PRACH位于所述NR低复杂度UE对应的PRACH资源集合。
- 根据权利要求17所述的方法,其中,所述接收UE上传的无线能力信息,包括:获取所述UE发送的随机接入消息3,所述随机接入消息3中包括所述无线能力信息;其中,所述随机接入消息3中包括无线能力信息,通过所述随机接入消息3中的媒体介入控制信道单元MAC CE指示所述无线能力信息,通过所述随机接入消息3中的MAC CE指示所述无线能力信息包括如下至少一种方式指示:利用保留/逻辑信道标识符R/LCID MAC子头中预留比特bit指示所述无线能力信息;利用MAC子头中逻辑信道标识符LCID的预留值指示所述无线能力信息,其中,所述预留值是为NR低复杂度UE定义的专用的LCID值,所述专用的LCID值同时指示随机接入消息3相关信息和所述无线能力信息。
- 一种信息处理方法,应用于接入和移动性管理功能AMF,包括:将用户设备UE的无线能力信息发送到基站gNB;其中,所述无线能力信息包括UE能力信息。
- 根据权利要求21所述的方法,其中,所述将UE的无线能力信息发送到gNB,包括:在所述gNB与所述UE建立通讯连接后,接收所述gNB发送的初始UE信息,其中,所述初始UE信息包括以下至少之一:服务请求信息、附着请求信息和跟踪区更新TAU请求信息;向所述gNB发送初始上下文建立请求,其中,所述初始上下文请求的UE无线能力信元包括新无线接入技术NR低复杂度UE能力信息。
- 根据权利要求21所述的方法,其中,所述将UE的无线能力信息发送到gNB,包括:获取源gNB发送的切换要求信息;将切换请求信息转发到目标gNB,其中,所述切换要求信息和所述切换请求信息的源到目标透明容器信元包含NR低复杂度UE能力信息;在所述UE获得所述目标gNB的资源准入资格和所述目标gNB中已将基于NR低复杂度UE能力所需要的资源分配完成后,将所述目标gNB发送的切换请求确认信息转发到所述源gNB。
- 一种信息处理装置,应用于用户设备UE,包括:发送模块,设置为将无线能力信息发送到基站gNB;其中,所述无线能力信息包括UE能力信息。
- 一种信息处理装置,应用于基站gNB,包括:接收模块,设置为接收用户设备UE的无线能力信息;其中,所述无线能力信息包括UE能力信息。
- 一种信息处理装置,应用于接入和移动性管理功能AMF,包括:转发模块,设置为将用户设备UE的无线能力信息发送到基站gNB;其中,所述无线能力信息包括UE能力信息。
- 一种设备,包括:一个或多个处理器;存储器,设置为存储一个或多个程序;所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现如权利要求1-23中任一项所述的信息处理方法。
- 一种计算机可读存储介质,存储有计算机程序,所述计算机程序被处理器执行时实现如权利要求1-23中任一项所述的信息处理方法。
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US20230038753A1 (en) | 2023-02-09 |
CN111901835A (zh) | 2020-11-06 |
CN116347631A (zh) | 2023-06-27 |
KR20220130193A (ko) | 2022-09-26 |
JP2023512969A (ja) | 2023-03-30 |
EP4096291A4 (en) | 2024-01-10 |
EP4096291A1 (en) | 2022-11-30 |
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