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Physical Layer Network Coding and Precoding for the Two-Way Relay Channel in Cellular Systems

机译:蜂窝系统中双向中继信道的物理层网络编码和预编码

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In this paper, we study the application of physical layer network coding to the joint design of uplink and downlink transmissions, where the base station and the relay have multiple antennas, and all $M$ mobile stations only have a single antenna. A new network coding transmission protocol is proposed, where $2M$ uplink and downlink transmissions can be accomplished within two time slots. Since each single antenna user has poor receive capability, precoding at the base station and relay has been carefully designed to ensure that co-channel interference can be removed completely. Explicit analytic results have been developed to demonstrate that the multiplexing gain achieved by the proposed transmission protocol is $M$, much better than existing time sharing schemes. To further increase the achievable diversity gain, two variations of the proposed transmission protocols have also been proposed when there are multiple relays and the number of the antennas at the base station and relay is increased. Monte-Carlo simulation results have also been provided to demonstrate the performance of the proposed network coded transmission protocol.
机译:在本文中,我们研究了物理层网络编码在上行链路和下行链路传输的联合设计中的应用,其中基站和中继具有多个天线,而所有$ M $移动站仅具有一个天线。提出了一种新的网络编码传输协议,其中$ 2M $上行链路和下行链路传输可以在两个时隙内完成。由于每个天线用户的接收能力都很差,因此对基站和中继站的预编码进行了精心设计,以确保可以完全消除同信道干扰。已经开发出明确的分析结果,以证明所提出的传输协议实现的复用增益为$ M $,比现有的分时方案要好得多。为了进一步增加可实现的分集增益,当存在多个中继并且基站和中继处的天线数量增加时,还提出了所提出的传输协议的两种变型。还提供了蒙特卡洛仿真结果,以证明所提出的网络编码传输协议的性能。

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