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Achieving Full Diversity in Multi-Antenna Two-Way Relay Networks via Symbol-Based Physical-Layer Network Coding

机译:通过基于符号的物理层网络编码在多天线两路中继网络中实现完全分集

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摘要

This paper considers physical-layer network coding (PNC) with M-ary phase-shift keying (MPSK) modulation in two-way relay channel (TWRC). A low complexity detection technique, termed symbol-based PNC (SPNC), is proposed for the relay. In particular, attributing to the outer product operation imposed on the superposed MPSK signals at the relay, SPNC obtains the network-coded symbol (NCS) straightforwardly without having to detect individual symbols separately. Unlike the optimal multi-user detector (MUD) which searches over the combinations of all users' modulation constellations, SPNC searches over only one modulation constellation, thus simplifies the NCS detection. Despite the reduced complexity, SPNC achieves full diversity in multi-antenna relay as the optimal MUD does. Specifically, antenna selection based SPNC (AS-SPNC) scheme and signal combining based SPNC (SC-SPNC) scheme are proposed. Our analysis of these two schemes not only confirms their full diversity performance, but also implies when SPNC is applied in multi-antenna relay, TWRC can be viewed as an effective single-input multiple-output (SIMO) system, in which AS-PNC and SC-PNC are equivalent to the general AS scheme and the maximal-ratio combining (MRC) scheme. Moreover, an asymptotic analysis of symbol error rate (SER) is provided for SC-PNC considering the case that the number of relay antennas is sufficiently large.
机译:本文考虑了双向中继信道(TWRC)中具有M级相移键控(MPSK)调制的物理层网络编码(PNC)。为继电器提出了一种低复杂度的检测技术,称为基于符号的PNC(SPNC)。特别地,由于归因于中继器施加在叠加的MPSK信号上的外部乘积运算,SPNC无需直接检测各个符号即可直接获得网络编码符号(NCS)。与搜索所有用户调制星座图组合的最佳多用户检测器(MUD)不同,SPNC仅搜索一个调制星座图,因此简化了NCS检测。尽管降低了复杂性,但SPNC可以像最佳MUD一样在多天线中继中实现完全的多样性。具体地,提出了基于天线选择的SPNC(AS-SPNC)方案和基于信号组合的SPNC(SC-SPNC)方案。我们对这两种方案的分析不仅证实了它们的完全分集性能,而且还暗示了在将SPNC应用到多天线中继中时,TWRC可被视为有效的单输入多输出(SIMO)系统,其中AS-PNC SC-PNC和SC-PNC等效于通用AS方案和最大比率合并(MRC)方案。此外,考虑到中继天线的数量足够大的情况,为SC-PNC提供了符号错误率(SER)的渐近分析。

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