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Precoder Design for Cooperative Multi-User Downlink MISO Channels with Finite Side-Link Capacity

机译:具有有限侧链容量的协作多用户下行MISO信道的预编码器设计

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For a pair of closely located and cooperating user equipments (UEs), a precoder is designed at the base station (BS) which considers the UE cooperation. The UEs collaborate over an out-of-band side-link with a finite capacity. The side-link may be used for interference cancellation (IC) or for relaying decoded symbols. The precoder has two parts, a cooperative part based on channel inversion and a non- cooperative part based on the minimum mean squared error (MMSE) metric. It is the interference from the former part which is managed at the UEs in the cooperative IC phase. The latter part is included at the BS to further improve the performance if there is transmit power remaining at the BS after the cooperative phase; this due to the assumption of finite capacity side-link. To study the performance of the precoder design, various joint optimization problems that maximize a sum-rate objective are considered. The effects of power imbalance and correlation between the UEs are included into the problems. From the numerical results it is observed that the sum-rate increases with cooperation. Further, with an increase in the side-link capacity the objective value approaches the single-user water-filling capacity limit. By modifying the precoder structure and the user cooperation mechanism, a unidirectional side-link case, where only one of the users accesses the side-link, is also discussed.
机译:对于一对紧密定位且协作的用户设备(UE),在基站(BS)处设计考虑了UE合作的预编码器。 UE通过有限容量的带外侧链路进行协作。侧链可用于干扰消除(IC)或中继解码符号。预编码器有两个部分,一个基于信道反转的协作部分,另一个基于最小均方误差(MMSE)度量的非协作部分。在协作IC阶段,在UE处管理的是来自前一部分的干扰。如果在协作阶段之后,BS处有剩余的发射功率,则后者将包含在BS中,以进一步提高性能。这是由于假设了有限容量的侧链。为了研究预编码器设计的性能,考虑了使总和率目标最大化的各种联合优化问题。 UE之间的功率不平衡和相关性的影响被包括在问题中。从数值结果可以看出,总和随着协作而增加。此外,随着侧链容量的增加,目标值接近单用户注水容量极限。通过修改预编码器的结构和用户合作机制,还讨论了单向侧链接的情况,其中只有一个用户访问侧链接。

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