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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Performance Analysis of Coherent PLC With MPSK Signaling in Nakagami-m Noise Environment
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Performance Analysis of Coherent PLC With MPSK Signaling in Nakagami-m Noise Environment

机译:Nakagami-m噪声环境中具有MPSK信号的相干PLC的性能分析

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摘要

An $N$-branch receive diversity power line communication (PLC) system subject to Rayleigh fading and corrupted by additive Nakagami-$m$ background noise is considered. A suboptimal maximal-ratio-combining (MRC), an optimal diversity combining, and a Gauss-optimal receiver are proposed for the PLC system. A closed form expression for the exact symbol error probability (SEP) and a union bound SEP expression are obtained for the proposed MRC and Gauss-optimal receivers, respectively, using a characteristic function (c.f.) approach for the system employing $M$-ary phase-shift keying (MPSK) at the transmitter, conditioned to $mN$ being an integer. The asymptotic expression for the SEP obtained for the MRC receiver at high signal-to-noise (SNR) demonstrates that the diversity order of the system is independent of the shape parameter $m$ of the additive noise which is identical to the diversity order of the optimal and the Gauss-optimal receivers. Further, numerical studies justify the advantages of employing receive diversity to achieve superior SEP performance. The effect of increasing the diversity branches on the PLC system performance with varying $m$ and the power efficiency of the PLC system are also presented.
机译:考虑了受雷利衰落影响的N $分支接收分集电力线通信(PLC)系统,该系统受累加的Nakagami- $ m $背景噪声破坏。针对PLC系统,提出了次优最大比例合并(MRC),最优分集合并和高斯最优接收器。对于使用$ M $ -ary的系统,使用特征函数(cf)方法分别为拟议的MRC和高斯最优接收器获得了精确符号错误概率(SEP)的闭式表达式和联合约束SEP表达式。发射机处的相移键控(MPSK),条件是$ mN $是整数。在高信噪比(SNR)下为MRC接收器获得的SEP的渐近表达式表明,系统的分集阶数独立于加性噪声的形状参数$ m $,而与加法噪声的分集阶数相同。最佳接收器和高斯最佳接收器。此外,数值研究证明了采用接收分集来实现卓越的SEP性能的优势。还介绍了随着$ m $的变化,增加分集分支对PLC系统性能的影响以及PLC系统的电源效率。

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