Error Probability of alpha-µ Fading Channels with Imperfect Carrier Phase Recovery

P. E. G. Silva, R. A. Souza, M. Yacoub, D. B. D. Costa, J. M. Moualeu
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引用次数: 3

Abstract

In this paper, the error performance of binary and quaternary phase-shift keying signals with imperfect carrier phase recovery is investigated assuming a flat slow î±-î fading channel and the presence of thermal noise. The phase noise is considered to be Tikhonov and Gaussian distributed. More specifically, an analytical expression for the exact average bit error rate is obtained, as well as its corresponding asymptotic expression for large signal-to-noise ratio (SNR) values. The derived expressions are valid for arbitrary values of the fading parameters, namely î± and î, and they are validated through Monte Carlo simulations. Several important conclusions concerning the system performance as a function of the channel parameters, namely, non-linearity, clustering, and loop SNR, are drawn.
载波相位恢复不完全时α -µ衰落信道的误差概率
本文研究了具有不完全载波相位恢复的二相移键控信号和四相移键控信号的误差性能,并假设存在热噪声和平坦缓慢î±-î衰落信道。相位噪声被认为是吉洪诺夫分布和高斯分布。更具体地说,得到了精确平均误码率的解析表达式,以及相应的大信噪比(SNR)值的渐近表达式。导出的表达式对于任意的衰落参数î±和î都是有效的,并通过蒙特卡罗仿真进行了验证。得出了关于系统性能作为通道参数的函数的几个重要结论,即非线性、聚类和环路信噪比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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