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Channel quantization for physical layer network-coded two-way relaying

机译:物理层网络编码的双向中继的信道量化

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The design of modulation schemes for the physical layer network-coded two way relaying scenario is considered with the protocol which employs two phases: Multiple access (MA) Phase and Broadcast (BC) phase. It was observed by Koike-Akino et al. that adaptively changing the network coding map used at the relay according to the channel conditions greatly reduces the impact of multiple access interference which occurs at the relay during the MA phase. In other words, the set of all possible channel realizations (the complex plane) is quantized into a finite number of regions, with a specific network coding map giving the best performance in a particular region. We obtain such a quantization analytically for the case when M-PSK (for M any power of 2) is the signal set used during the MA phase. We show that the complex plane can be classified into two regions: a region in which any network coding map which satisfies the so called exclusive law gives the same best performance and a region in which the choice of the network coding map affects the performance, which is further quantized based on the choice of the network coding map which optimizes the performance. The quantization thus obtained analytically, leads to the same as the one obtained using computer search for 4-PSK signal set by Koike-Akino et al., for the specific value of M = 4.
机译:考虑采用两个阶段的协议来考虑物理层网络编码的双向中继场景的调制方案的设计:两个阶段:多路访问(MA)阶段和广播(BC)阶段。 Koike-Akino等人观察到了这一点。根据信道条件自适应地改变在中继器处使用的网络编码映射的方法,极大地降低了在MA阶段在中继器处发生的多址干扰的影响。换句话说,所有可能的信道实现(复杂平面)的集合被量化为有限数量的区域,而特定的网络编码映射在特定区域中提供了最佳性能。对于M-PSK(对于M而言,任何2的幂)是在MA阶段使用的信号集的情况,我们可以通过分析获得这种量化。我们证明了复杂平面可以分为两个区域:一个区域,其中满足所谓排他法则的任何网络编码图都具有相同的最佳性能;一个区域,其中网络编码图的选择会影响性能,这基于优化性能的网络编码图的选择,对信号进行进一步量化。通过分析获得的量化结果与使用Koike-Akino等人设置的4-PSK信号的计算机搜索获得的量化结果相同,具体值为M = 4。

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