WO2012094995A1 - 一种comp的实现方法、装置及基站 - Google Patents

一种comp的实现方法、装置及基站 Download PDF

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Publication number
WO2012094995A1
WO2012094995A1 PCT/CN2012/070208 CN2012070208W WO2012094995A1 WO 2012094995 A1 WO2012094995 A1 WO 2012094995A1 CN 2012070208 W CN2012070208 W CN 2012070208W WO 2012094995 A1 WO2012094995 A1 WO 2012094995A1
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Prior art keywords
user equipment
edge user
base station
comp
central
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PCT/CN2012/070208
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English (en)
French (fr)
Inventor
张华炜
陈莉娜
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华为技术有限公司
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Publication of WO2012094995A1 publication Critical patent/WO2012094995A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/04Error control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/24Cell structures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling

Definitions

  • the present invention relates to the field of communications, and in particular, to a method, an apparatus, and a base station for implementing a coordinated multipoint technology CoMP. Background technique
  • CoMP ( coordinated multi-point ) is a cooperative multipoint technology that includes downlink CoMP transmission and uplink CoMP reception.
  • the uplink CoMP receives the combined reception of user equipment data by multiple cells to improve the throughput of the user equipment, and uses the joint processing method to obtain the transmission gain.
  • the CoMP includes an intra-eNodeB in the base station and an inter-eNodeB CoMP between the base stations. Intra-eNodeB CoMP cooperation occurs in one base station and is cooperation between different cells in the same base station. Inter-eNodeB CoMP cooperation occurs between different base stations and is a cooperation between different cells of different base stations.
  • ICIC Inter-Cell Interference Coordination
  • the ICIC frequency domain coordination divides the frequency band into three parts, each of which uses 1/3 of the frequency band as the edge user equipment band and the remaining 2/3 band as the central user equipment band.
  • the ICIC frequency domain coordination algorithm needs to divide the frequency band into the edge frequency band and the center frequency band, and try to make the edge user equipment dispatch in the edge frequency band.
  • the ICIC algorithm therefore differentiates the user equipment into edge user equipment and central user equipment.
  • ICIC edge user equipment decision is based on downlink RSRP (Reference Signal Receiving)
  • the user equipment is determined to be the edge user equipment. If not less than, the user equipment is determined as the central user equipment.
  • ICIC When uplink intra-eNodeB CoMP and ICIC technologies are combined, ICIC enables neighboring cells
  • the edge user equipment uses different frequency resources, and the P strip lowers the interference between the user equipments at the edge of the neighboring area, thereby improving the throughput of the edge user equipment.
  • CoMP uses interference to obtain interference suppression gain to improve the performance gain of CoMP user equipment.
  • the CoMP user equipment is an ICIC edge user equipment, since the ICIC staggers the interference between the edge user equipment frequency bands, the interference level is lowered, so that the interference suppression capability of the CoMP is reduced, thereby causing the performance gain of the ICIC combined with the CoMP compared to the CoMP. The performance gain is reduced.
  • the present invention provides a method and an apparatus for implementing a coordinated multi-point technology CoMP, which solves the problem that the performance gain of ICIC combined with CoMP is lower than that of CoMP in the prior art, and the specific solution is as follows:
  • a cooperative multi-point technology CoMP implementation method including:
  • Determining that the user equipment whose difference is less than the preset threshold is an optional edge user equipment, and the user equipment that is not less than the preset threshold is the central user equipment;
  • a cooperative multi-point technology CoMP implementation device including:
  • An acquiring module configured to obtain a difference between a reference signal received power RSRP of a serving cell of the determined user equipment and a neighboring cell of the serving cell;
  • a first determining module configured to determine that the user equipment whose difference is less than the preset threshold is an optional edge user equipment, and the user equipment that is not less than the preset threshold is a central user equipment;
  • a second determining module configured to determine, as the central user equipment, the user equipment that meets the preset condition in the candidate edge user equipment, to perform frequency selection scheduling in the central frequency band;
  • the CoMP module is configured to perform CoMP on the central user equipment.
  • a base station includes: the cooperative multi-point technology CoMP implementation device as above.
  • FIG. 1 is a flowchart of a method for implementing a CoMP according to an embodiment of the present invention
  • FIG. 2 is a flowchart of a method for implementing another CoMP according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of an apparatus for implementing a CoMP according to an embodiment of the present invention.
  • the present invention discloses a method for implementing the CoMP, and the specific implementation manner is as follows:
  • the flow of the method for implementing the CoMP disclosed in the present invention is as shown in FIG. 1 , and the method includes the following steps:
  • Step S11 Acquire a serving cell of the user equipment to be determined The difference between the reference signal received power and the RSRP of the neighboring cell of the serving cell; it can be understood that the serving cell is the serving cell where the user equipment is currently located.
  • Step S12 it is determined whether the difference is less than the preset threshold, and if so, step S13 is performed, and if not, step S14 is performed;
  • the preset threshold value is a value arbitrarily set according to actual conditions.
  • Step S13 determining that the user equipment is an alternate edge user equipment, performing step S15;
  • the alternate edge user equipment is not a real attribute of the user equipment, but an intermediate process parameter set to facilitate subsequent determination.
  • the attributes of the user equipment still only include: CEU (Cell edge user) and CCU (Cell center user).
  • Step S14 determining that the user equipment is the central user equipment, performing step S16;
  • Step S15 Determine, in the candidate edge user equipment, the user equipment that meets the preset condition as the central user equipment, so that the frequency selection scheduling is performed in the central frequency band.
  • the attribute of the user equipment that meets the preset condition in the candidate edge user equipment is set to ccu.
  • Step S16 Perform CoMP on the central user equipment.
  • CoMP is performed on the user equipment whose user equipment attribute is CCU.
  • the user equipment that meets the preset condition may be an intra-base station edge user equipment in the intra-eNodeB CoMP, and may be an inter-base station edge user equipment in the inter-eNodeB CoMP.
  • This embodiment does not limit the number and type of user equipments that meet the preset conditions.
  • the attributes can be set to CCU.
  • frequency scheduling is then performed in the central frequency band to obtain more frequency selective scheduling gains and introduce interference.
  • the interference introduced by the central user equipment determined in step S15 is suppressed by CoMP technology to obtain interference suppression gain.
  • the user equipment that meets the preset condition in the edge user equipment determined in the prior art is used as the central user equipment, so that the edge band is 1/3 edge compared with the original algorithm.
  • the frequency selection scheduling more frequency selection scheduling gains can be obtained, and the introduced interference can be eliminated by CoMP technology to achieve the purpose of obtaining interference suppression gain and improving system performance.
  • This method can be applied to the combination of uplink intra-eNodeB CoMP and ICIC technology.
  • the device type decision can also be applied to the downlink user equipment type discrimination, or the scenario where the inter-eNodeB CoMP and the ICIC technology are combined between the base stations, but in this scenario, the user equipment that meets the preset condition is the inter-base station edge user equipment. , identify it as a central user device to achieve the above purpose.
  • the scheduling principle is basically similar to that of the uplink.
  • the edge user equipment is preferentially called in the edge frequency band
  • the central user equipment is preferentially called in the central frequency band.
  • the method may further include:
  • Step S17 Determine that the candidate edge user equipment other than the central user equipment is an edge user equipment.
  • This embodiment does not limit the step of performing CoMP on the central user equipment. Before this step, the process of performing CoMP on the central user equipment may be performed after the edge user equipment is determined to achieve the purpose of eliminating interference.
  • Step S21 taking the difference between the reference signal receiving power RSRP of the current serving cell of the determined user equipment and the neighboring cell;
  • Step S22 determining whether the difference is less than the preset threshold, if yes, proceeding to step S23, and if not, executing step S24;
  • Step S23 Determine that the user equipment is an alternate edge user equipment.
  • Step S24 determining that the user equipment is the central user equipment, performing step S28;
  • Step S25 Determine whether the candidate edge user equipment is an edge user equipment in the base station, and if so, Step S26 is performed, if no, step S27 is performed;
  • Step S26 determining that the candidate edge user equipment is the central user equipment, so that it performs frequency selection scheduling in the central frequency band, and step S28 is performed;
  • Step S27 Determine that the candidate edge user equipment is an edge user equipment.
  • Step S28 Perform CoMP on the central user equipment.
  • the user equipment that meets the conditions of the user equipment in the edge of the base station is determined as the central user equipment by performing further discriminating on the candidate edge user equipment.
  • the condition that the part of the user equipment in the alternative edge user equipment is determined as the central user equipment may be preset according to actual needs.
  • the user equipment in the candidate edge user equipment that meets the conditions of the inter-base station edge user equipment may be determined as the central user equipment.
  • the intra-base station user equipment that is determined to be the central user equipment can be scheduled on a wider 2/3 center frequency band, so that a higher SINR (Signal to Interference plus Noise Ratio) can be obtained.
  • SINR Signal to Interference plus Noise Ratio
  • the frequency selection scheduling is performed in the 1/3 edge band, and more frequency selection scheduling gains can be obtained.
  • the interference introduced by the user equipment at the inner edge of the base station can obtain the interference suppression gain through CoMP technology, so the frequency selection scheduling gain and the interference suppression gain can be obtained at the same time, and the ICIC combined with the CoMP performance is improved.
  • the determining process for the user equipment in the inner edge of the base station in this embodiment may be: determining whether the current serving cell of the candidate edge user equipment and the neighboring cell of the measured RSRP belong to the same base station. If yes, the candidate edge user The device is an intra-base station edge user equipment. If not, the candidate edge user equipment is not an intra-base station edge user equipment, and is determined as an edge user equipment.
  • the candidate edge device belonging to the neighboring base station in the neighboring cell of the measured RSRP may be selected as the inter-base station edge user equipment, and the inter-base station edge user equipment is determined as the center.
  • the present invention discloses a device for implementing CoMP, and the structure thereof is as shown in FIG. 3, including: an obtaining module 31, a first determining module 32, a second determining module 33, and a CoMP module 34, among them:
  • the obtaining module 31 is configured to obtain a difference between the reference signal received power RSRP of the serving cell of the user equipment and the neighboring cell, and it is understood that the serving cell of the user equipment is the serving cell where the user equipment is currently located;
  • the determining module 32 is configured to determine that the user equipment whose difference is less than the preset threshold is an optional edge user equipment, and the user equipment that is not smaller than the preset threshold is the central user equipment;
  • the user equipment that meets the preset condition in the candidate edge user equipment is determined as the central user equipment to perform frequency selection scheduling in the central frequency band; and the CoMP module 34 is configured to perform CoMP on the central user equipment.
  • the foregoing apparatus further includes: an edge user equipment determining module 35, configured to determine that the edge user equipment other than the central user equipment is an edge user equipment.
  • the second determining module 33 includes:
  • a first determining unit 331, configured to determine whether the candidate edge user equipment is an intra-base station user equipment or an inter-base station edge user equipment;
  • the third determining unit 332 is configured to determine that the intra-area user equipment of the base station or the inter-base station edge user equipment is the central user equipment.
  • the first determining unit 331 includes: a second determining sub-unit 3311, configured to determine whether the current serving cell of the candidate edge user equipment and the neighboring cell belong to the same base station; and a fourth determining sub-unit 3312, configured to determine The candidate edge user equipment of the current serving cell and the neighboring cell belonging to the same base station is an intra-base station edge user equipment.
  • This embodiment does not limit the structure of the implementation device of the CoMP. As shown in FIG. 3, the specific structure may be adjusted according to the implementation function thereof. As long as the structure capable of realizing the function of the device is protected by the embodiment. range.
  • the first determining unit determines whether the difference is less than a preset threshold, and the difference is less than a preset.
  • the user equipment of the threshold is determined as an alternative edge user equipment, and the user equipment that is not less than the preset threshold is determined as the central user equipment, and the second determining unit selects the preset from the candidate edge user equipment.
  • the conditional user equipment is determined to be the central user equipment, This part of the user equipment can be scheduled on a wider frequency band to obtain a certain scheduling gain.
  • the present invention further discloses a base station, including a CoMP device, configured to acquire a difference between a reference signal received power RSRP of a current serving cell and a neighboring cell of the determined user equipment;
  • the user equipment with the threshold value is an optional edge user equipment, and the user equipment that is not less than the preset threshold value is the central user equipment; the user equipment that meets the preset condition in the candidate edge user equipment is determined as Central user equipment to perform frequency selection scheduling in a central frequency band; CoMP 0 for the central user equipment
  • the specific structure of the CoMP device in this embodiment can be as shown in FIG.
  • the various embodiments in the specification are described in a progressive manner, and each embodiment focuses on differences from other embodiments, and the same similar parts between the various embodiments can be referred to each other.
  • the comparison is described, and the relevant part can be referred to the method part.
  • RAM random access memory
  • ROM read only memory
  • EEPROM electrically programmable ROM
  • EEPROM electrically erasable programmable ROM
  • registers hard disk, removable disk, CD-ROM, or technical fields. Any other form of storage medium known.

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  • Computer Networks & Wireless Communication (AREA)
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Description

一种 CoMP的实现方法、 装置及基站 本申请要求了 2011年 1月 12日提交的、 申请号为 201110005603.7、发 明名称为"一种 CoMP的实现方法、 装置及基站"的中国申请的优先权, 其 全部内容通过引用结合在本申请中。 技术领域
本发明涉及通信领域, 尤其涉及一种协作多点技术 CoMP的实现方法、 装置及基站。 背景技术
CoMP ( coordinated multi-point )是一种协作多点技术, 包括下行 CoMP 发射和上行 CoMP接收。 上行 CoMP接收通过多个小区对用户设备数据的联 合接收来提高用户设备的吞吐量, 利用联合处理的方式获取传输增益。 CoMP包括基站内 intra-eNodeB和基站间 inter- eNodeB CoMP。 Intra- eNodeB CoMP协作发生在一个基站内, 是同一个基站内不同小区之间的协作。 inter- eNodeB CoMP协作发生在不同的基站间, 是不同基站的不同小区之间的协 作。
ICIC ( Inter-Cell Interference Coordination )是一种小区间的干扰协调技 术, 尽量避免本小区边缘用户设备和邻区边缘用户设备使用相同的频率资 源。 ICIC频域协调是将频带分为 3份, 每个小区使用其中的 1/3频带作为边缘 用户设备频带, 剩余的 2/3频带作为中心用户设备频带。
ICIC频域协调算法需要将频带划分为边缘频带和中心频带, 尽量使边 缘用户设备调度在边缘频带。 因此 ICIC算法将用户设备区分为边缘用户设 备和中心用户设备。
ICIC边缘用户设备判决是基于下行 RSRP ( Reference Signal Receiving
Power, 参考信号接收功率) 测量的, 当邻区 RSRP与本小区 RSRP的差值小 于预设门限时, 即判定用户设备为边缘用户设备, 若不小于, 则将用户设 备判决为中心用户设备。
当上行 intra-eNodeB CoMP和 ICIC技术相结合时, ICIC使相邻小区的 边缘用户设备使用不同的频率资源, P条低了邻区边缘用户设备之间的干扰, 从而提高了边缘用户设备吞吐量。 而 CoMP是利用干扰来获得干扰抑制增 益来提高 CoMP用户设备的性能增益。 当 CoMP用户设备为 ICIC边缘用户 设备时, 由于 ICIC错开了边缘用户设备频带之间的干扰, 使得干扰水平下 降, 因此使得 CoMP获得干扰抑制能力下降, 因此导致了 ICIC结合 CoMP 的性能增益相比 CoMP的性能增益的下降。 发明内容 有鉴于此, 本发明提供一种协作多点技术 CoMP的实现方法及装置, 以解决现有技术中 ICIC结合 CoMP的性能增益相比 CoMP的性能增益下降 的问题, 其具体方案如下:
一种协作多点技术 CoMP的实现方法, 包括:
获取被判决用户设备的服务小区与服务小区的邻区的参考信号接收功 率 RSRP的差值;
确定所述差值小于预设门限值的用户设备为备选边缘用户设备, 不小 于所述预设门限值的用户设备为中心用户设备;
将所述备选边缘用户设备中的符合预设条件的用户设备确定为中心用 户设备,以使其在中心频带内进行频选调度;对所述中心用户设备做 CoMP。
一种协作多点技术 CoMP的实现装置, 包括:
获取模块, 用于获取被判决用户设备的服务小区与服务小区的邻区的 参考信号接收功率 RSRP的差值;
第一确定模块, 用于确定所述差值小于预设门限值的用户设备为备选 边缘用户设备, 不小于所述预设门限值的用户设备为中心用户设备;
第二确定模块, 用于将所述备选边缘用户设备中的符合预设条件的用 户设备确定为中心用户设备, 以使其在中心频带内进行频选调度;
CoMP模块, 用于对所述中心用户设备做 CoMP。
一种基站, 包括: 如上的协作多点技术 CoMP的实现装置。
从上述技术方案可以看出, 本发明实施例公开的 CoMP的实现方法采用 将现有技术中的边缘用户设备中的部分用户设备作为中心用户设备的方 式, 使得相比原有算法在 1 / 3 边缘频带内进行频选调度, 能够获得更多的 频选调度增益, 同时引入的千扰, 可以通过 CoMP技术来消除, 以实现获得 干扰抑制增益, 提升***性能的目的, 解决了现有技术中 ICIC 结合 CoMP 的性能增益相比 CoMP的性能增益下降的问题。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对 实施例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本发明的一些实施例, 对于本领域普通技术人员 来讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附 图。
图 1为本发明实施例公开的一种 CoMP的实现方法的流程图;
图 2为本发明实施例公开的又一 CoMP的实现方法的流程图;
图 3为本发明实施例公开的一种 CoMP的实现装置的结构示意图。
具体实施方式 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进 行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没 有做出创造性劳动前提下所获得的所有其他实施例, 都属于本发明保护的 范围。
本发明公开了一种 CoMP的实现方法, 其具体实现方式如下所述: 本发明公开的一种 CoMP的实现方法的流程如图 1所示, 包括: 步骤 S11、获取被判决用户设备的服务小区与该服务小区邻区的参考信 号接收功率 RSRP 的差值; 可以理解的是, 服务小区即为该用户设备当前 所处的服务小区。 步骤 S12、 判断差值是否小于预设门限值, 若是, 则执行步骤 S13, 若 否, 则执行步骤 S 14;
该预设门限值为根据实际情况任意设定的值。
步骤 S13、 确定用户设备为备选边缘用户设备, 执行步骤 S 15;
备选边缘用户设备并非用户设备的真实属性, 而是为了方便后续的判 断而设定的中间过程参数。 用户设备的属性仍然只包括: CEU (Cell edge user, 边缘用户设备)和 CCU (Cell center user, 中心用户设备)。
步骤 S14、 确定用户设备为中心用户设备, 执行步骤 S16;
此处需要将用户设备的属性设定为 CCU。
步骤 S15、将备选边缘用户设备中的符合预设条件的用户设备确定为中 心用户设备, 以使其在中心频带内进行频选调度。
此处将备选边缘用户设备中符合预设条件的用户设备的属性设定为 ccu。
步骤 S16、 对中心用户设备做 CoMP。
在本步骤中, 对用户设备属性为 CCU的用户设备做 CoMP。 本实施例 中符合预设条件的用户设备在 intra-eNodeB CoMP时,可以为基站内边缘用 户设备, 在 inter- eNodeB CoMP时, 可以为基站间边缘用户设备。 本实施 例并不限定符合预设条件的用户设备的数量及类型, 只要是属于备选边缘 用户设备的用户设备, 符合根据实际情况设定的预设条件, 都可以将其属 性设定为 CCU作为中心用户设备, 然后在中心频带内进行频选调度, 以获 得更多的频选调度增益, 并引入千扰。
利用 CoMP技术将步骤 S15确定的中心用户设备引入的干扰进行抑制, 以获得干扰抑制增益。 本实施例公开的 CoMP的实现方法中, 将现有技术 中判定出的边缘用户设备中的符合预设条件的用户设备作为中心用户设备 的方式, 使得相比原有算法在 1/3边缘频带内进行频选调度, 能够获得更多 的频选调度增益, 同时引入的干扰, 可以通过 CoMP技术来消除, 以实现 获得干扰抑制增益, 提升***性能的目的。
本方法可以应用在上行 intra-eNodeB CoMP和 ICIC技术相结合时的用 户设备类型判决, 同样也可以应用在下行用户设备类型判别, 或者是基站 间 inter- eNodeB CoMP与 ICIC技术结合的场景, 只是在此场景下, 符合预 设条件的用户设备为基站间边缘用户设备, 将其确定为中心用户设备以实 现上述目的。 而将其应用在下行 CoMP和 ICIC技术相结合时, 其调度原则 和上行基本类似, 边缘用户设备优先在边缘频带调用, 中心用户设备优先 在中心频带调用。 对于边缘用户设备频带采用高功率发送, 对于中心用户 设备频带采用低功率发送。 这样通过 ICIC错开高功率发送的边缘用户设备 频带, 可以降低边缘用户设备之间的干扰。 同样类似上行 ICIC边缘用户设 备判决的改进算法, 将符合预设条件的边缘用户设备判为中心用户设备, 在中心频带上调用。 此时可获得频选调度增益, 并且产生的干扰可以由 CoMP技术消除。 此外, 在上一实施例的在上述步骤后, 还可以包括:
步骤 S17、确定除所述中心用户设备以外的备选边缘用户设备为边缘用 户设备。
将备选边缘用户设备除属性为 CCU 之外的用户设备的属性设定为 CEU, 确定其作为边缘用户设备。
本实施例并不限定对中心用户设备做 CoMP的步骤在本步骤之前, 同 样可以在确定边缘用户设备之后, 再执行对中心用户设备做 CoMP的过程 以实现消除干扰的目的。
本发明公开的又一 CoMP的实现方法的流程如图 2所示, 包括: 步骤 S21、取被判决用户设备的当前服务小区与邻区的参考信号接收功 率 RSRP的差值;
步骤 S22、 判断差值是否小于预设门限值, 若是, 则执行步骤 S23, 若 否, 则执行步骤 S24;
步骤 S23、 确定用户设备为备选边缘用户设备;
步骤 S24、 确定用户设备为中心用户设备, 执行步骤 S28;
步骤 S25、 判断备选边缘用户设备是否为基站内边缘用户设备, 若是, 则执行步骤 S26, 若否, 则执行步骤 S27;
步骤 S26、确定备选边缘用户设备为中心用户设备, 以使其在中心频带 内进行频选调度, 执行步骤 S28;
步骤 S27、 确定备选边缘用户设备为边缘用户设备;
步骤 S28、 对中心用户设备做 CoMP。
本实施例中, 通过对备选边缘用户设备进行进一步的判别, 将备选边 缘用户设备中符合基站内边缘用户设备条件的用户设备判决为中心用户设 备, 可以理解的是, 在本实施例中, 将备选边缘用户设备中的部分用户设 备判决为中心用户设备的条件可以根据实际需求预先设定。 例如, 可以设 定备选边缘用户设备中符合基站间边缘用户设备条件的用户设备判决为中 心用户设备。 在频选调度下, 被判决为中心用户设备的基站内边缘用户设 备可以在更宽的 2/3中心频带上调度, 从而可以获得较高 SINR ( Signal to Interference plus Noise Ratio, 信号与干扰加噪声比)的资源块来调度该用户 设备。相比原有算法在 1/3边缘频带内进行频选调度, 能够获得更多的频选 调度增益。 基站内边缘用户设备引入的干扰可以通过 CoMP技术获得千扰 抑制增益, 因此能够同时获得频选调度增益和干扰抑制增益, 提升了 ICIC 结合 CoMP性能。
本实施例中对于基站内边缘用户设备的判别过程可以为: 判断备选边 缘用户设备的当前服务小区与所述测得 RSRP 的邻区是否属于相同的基站 如果是, 则所述备选边缘用户设备为基站内边缘用户设备, 如果不是, 则 所述备选边缘用户设备不是基站内边缘用户设备, 将其确定为边缘用户设 备。
对于基站间 inter- eNodeB CoMP,可以选择将当前服务小区与所述测得 RSRP 的邻区属于相邻基站的备选边缘用户设备确定为基站间边缘用户设 备, 将基站间边缘用户设备判决为中心用户设备以实现上述目的。 同时, 本发明公开了一种 CoMP的实现装置, 其结构如图 3所示, 包 括: 获取模块 31、 第一确定模块 32、 第二确定模块 33和 CoMP模块 34, 其中:
获取模块 31用于获取被判决用户设备的服务小区与邻区的参考信号接 收功率 RSRP 的差值, 可以理解的是, 用户设备的服务小区即为该用户设 备当前所处的服务小区; 第一确定模块 32用于确定所述差值小于预设门限 值的用户设备为备选边缘用户设备, 不小于所述预设门限值的用户设备为 中心用户设备; 第二确定模块 33用于将所述备选边缘用户设备中的符合预 设条件的用户设备确定为中心用户设备, 以使其在中心频带内进行频选调 度; CoMP模块 34, 用于对所述中心用户设备做 CoMP。
进一步的, 上述装置还包括: 边缘用户设备确定模块 35 , 用于确定除 所述中心用户设备以外的备选边缘用户设备为边缘用户设备。
更进一步的, 所述第二确定模块 33包括:
第一判别单元 331 ,用于判断所述备选边缘用户设备是否为基站内边缘 用户设备或基站间边缘用户设备;
第三确定单元 332 ,用于确定所述基站内边缘用户设备或基站间边缘用 户设备为中心用户设备。
所述第一判别单元 331 包括: 第二判别子单元 3311, 用于判断所述备 选边缘用户设备的当前服务小区与所述邻区是否属于相同基站; 第四确定 子单元 3312, 用于确定所述当前服务小区与所述邻区属于相同基站的备选 边缘用户设备为基站内边缘用户设备。
本实施例并不限定 CoMP的实现装置的结构如图 3所示, 可以根据其 实现功能将其具体结构进行相应的调整, 只要是能够实现本装置的功能的 结构, 都是本实施例保护的范围。
上述各个单元间的工作过程如下所述:
获取单元获取被判决用户设备的当前服务小区与邻区的参考信号接收 功率 RSRP 的差值后; 第一确定单元判定所述差值是否小于预设门限值, 将所述差值小于预设门限值的用户设备确定为备选边缘用户设备, 将不小 于所述预设门限值的用户设备确定为中心用户设备, 第二确定单元从所述 备选边缘用户设备中选择符合预设条件的用户设备确定为中心用户设备, 使得这部分用户设备可在更宽的频带上调度, 获得一定的调度增益。 而这 部分用户设备引入的干扰可以通过 CoMP 单元对所述中心用户设备做 CoMP来加以抑制, 获得 CoMP干扰抑制增益。 因此可以进一步提高 ICIC 结合 CoMP性能的目的。 更进一步的, 本发明还公开了一种基站, 包括 CoMP装置, 该装置用 于获取被判决用户设备的当前服务小区与邻区的参考信号接收功率 RSRP 的差值; 确定所述差值小于预设门限值的用户设备为备选边缘用户设备, 不小于所述预设门限值的用户设备为中心用户设备; 将所述备选边缘用户 设备中的符合预设条件的用户设备确定为中心用户设备, 以使其在中心频 带内进行频选调度; 对所述中心用户设备做 CoMP0
本实施例中的 CoMP装置的具体结构可以如图 3所示。 本说明书中各个实施例采用递进的方式描述, 每个实施例重点说明的 都是与其他实施例的不同之处, 各个实施例之间相同相似部分互相参见即 可。 对于实施例公开的装置而言, 由于其与实施例公开的方法相对应, 所 以描述的比较筒单, 相关之处参见方法部分说明即可。
专业人员还可以进一步意识到, 结合本文中所公开的实施例描述的各 示例的单元及算法步骤, 能够以电子硬件、 计算机软件或者二者的结合来 实现, 为了清楚地说明硬件和软件的可互换性, 在上述说明中已经按照功 能一般性地描述了各示例的组成及步骤。 这些功能究竟以硬件还是软件方 式来执行, 取决于技术方案的特定应用和设计约束条件。 专业技术人员可 不应认为超出本发明的范围。
结合本文中所公开的实施例描述的方法或算法的步骤可以直接用硬 件、 处理器执行的软件模块, 或者二者的结合来实施。 软件模块可以置于 随机存储器 (RAM )、 内存、 只读存储器 (ROM )、 电可编程 ROM、 电可 擦除可编程 ROM、 寄存器、 硬盘、 可移动磁盘、 CD-ROM. 或技术领域内 所公知的任意其它形式的存储介质中。
对所公开的实施例的上述说明, 使本领域专业技术人员能够实现或使 用本发明。 对这些实施例的多种修改对本领域的专业技术人员来说将是显 而易见的, 本文中所定义的一般原理可以在不脱离本发明的精神或范围的 情况下, 在其它实施例中实现。 因此, 本发明将不会被限制于本文所示的 这些实施例, 而是要符合与本文所公开的原理和新颖特点相一致的最宽的 范围。

Claims

权利要求
1、 一种协作多点技术 CoMP的实现方法, 其特征在于, 包括: 获取被判决用户设备的当前服务小区与所述服务小区的邻区的参考信 号接收功率 RSRP的差值;
确定所述差值小于预设门限值的用户设备为备选边缘用户设备, 不小 于所述预设门限值的用户设备为中心用户设备;
将所述备选边缘用户设备中的符合预设条件的用户设备确定为中心用 户设备, 以使其在中心频带内进行频选调度;
对所述中心用户设备做 CoMP„
2、 根据权利要求 1所述的方法, 其特征在于, 所述将所述备选边缘用 户设备中的符合预设条件的用户设备确定为中心用户设备的过程包括: 当所述备选边缘用户设备为基站内边缘用户设备时, 确定所述备选边 缘用户设备为中心用户设备: 或
当所述备选边缘用户设备为基站间边缘用户设备时, 确定所述备选边 缘用户设备为中心用户设备。
3、 根据权利要求 2所述的方法, 其特征在于, 按照以下步骤判断所述 用户设备是否为基站内边缘用户设备:
当所述备选边缘用户设备的当前服务小区与所述邻区属于相同的基站 时, 确定所述备选边缘用户设备为基站内边缘用户设备。
4、 根据权利要求 2所述的方法, 其特征在于, 按照以下步骤判断所述 用户设备是否为基站间边缘用户设备:
当所述备选边缘用户设备的当前服务小区与所述邻区属于不同的基站 时, 确定所述备选边缘用户设备为基站间边缘用户设备。
5、 根据权利要求 1-4中任意一项所述的方法, 其特征在于, 还包括: 确定除所述中心用户设备以外的备选边缘用户设备为边缘用户设备。
6、 一种协作多点技术 CoMP的实现装置, 其特征在于, 包括: 获取模块, 用于获取被判决用户设备的当前服务小区与邻区的参考信 号接收功率 RSRP的差值; 第一确定模块, 用于确定所述差值小于预设门限值的用户设备为备选 边缘用户设备, 不小于所述预设门限值的用户设备为中心用户设备;
第二确定模块, 用于将所述备选边缘用户设备中的符合预设条件的用 户设备确定为中心用户设备, 以使其在中心频带内进行频选调度;
CoMP模块, 用于对所述中心用户设备做 CoMP。
7、根据权利要求 6所述的装置, 其特征在于, 所述第二确定模块包括: 第一判别单元, 用于判断所述备选边缘用户设备是否为基站内边缘用 户设备或基站间边缘用户设备;
第三确定单元, 用于确定所述基站内边缘用户设备或基站间边缘用户 设备为中心用户设备。
8、根据权利要求 7所述的装置, 其特征在于, 所述第一判别单元包括: 第二判别子单元, 用于判断所述备选边缘用户设备的当前服务小区与 所述邻区是否属于相同的基站;
第四确定子单元, 用于确定所述当前服务小区与所述邻区属于相同基 站的备选边缘用户设备为基站内边缘用户设备。
9、 根据权利要求 6-8中任意一项所述的装置, 其特征在于, 还包括: 边缘用户设备确定模块, 用于确定除所述中心用户设备以外备选边缘 用户设备为边缘用户设备。
10、 一种基站, 其特征在于, 包括如权利要求 6-8 中任意一项所述的 装置。
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