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Error Performance Analysis of BPSK Modulation in Physical-Layer Network-Coded Bidirectional Relay Networks

机译:物理层网络编码双向中继网络中BPSK调制的错误性能分析

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摘要

We analyze the error performance of the physical-layer network coding (PNC) protocol without channel coding in bidirectional relay networks for binary phase shift keying (BPSK) over Rayleigh fading channels. It is assumed that a bidirectional relay network consists of two sources and a relay, where each node has a single antenna and operates in a half-duplex mode, and the PNC over finite GF(2) is employed. In this system, since the maximum-likelihood (ML) detection metric of the multiple access channel (MAC) at the relay is given by the sum of two exponential functions, it is not possible to utilize the classical Euclidean distance rule. To make the performance analysis tractable, we approximate the ML detection metric by adopting the max-log approximation. Then we derive tight upper and lower bounds in closed form for the average symbol error probability of the MAC at the relay. Finally, we obtain tight upper and lower bounds in closed form for the end-to-end average bit-error rate (BER).
机译:我们分析了物理层网络编码(PNC)协议在双向中继网络中没有信道编码的误码性能,用于瑞利衰落信道上的二进制相移键控(BPSK)。假定双向中继网络由两个源和一个中继组成,其中每个节点具有一个天线并以半双工模式运行,并且使用有限GF(2)上的PNC。在该系统中,由于中继站上多址访问信道(MAC)的最大似然(ML)检测度量由两个指数函数之和给出,因此无法利用经典的欧几里得距离规则。为了使性能分析易于处理,我们通过采用最大对数近似值来逼近机器学习检测指标。然后,我们得出中继处MAC的平均符号错误概率的封闭形式的紧密上限和下限。最后,我们以封闭的形式获得了端到端平均误码率(BER)的紧密上限和下限。

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