不完全相位同步对MPSK在瑞利、瑞利和中上衰落信道误码率性能的影响

A. Chandra, A. Patra, C. Bose
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引用次数: 8

摘要

本文提供了一种框架,用于分析在符合瑞利分布、瑞利分布或中agami-m分布的常见衰落信道上相位估计不正确的m相移键控(MPSK)系统的误码率性能。此外,信道还受到加性高斯白噪声(AWGN)的扰动。本文考虑的相位畸变是随机的,无偏的,即具有零均值,并遵循吉洪诺夫分布。分析平均符号误差概率(SEP)通过一种新的有效方法计算,并绘制为不同调制阶数m值的信噪比(SNR)的函数。我们的方法依赖于接收信噪比的矩生成函数(MGF)的知识。得到的表达式是有限范围内只包含初等函数的被积的积分。进行了大量的蒙特卡罗模拟来验证理论结果。虽然SEP可以通过直接数值积分来计算,但MGF方法的性能要好得多,因为直接积分由于存在无穷积分极限而存在数值不稳定性和不准确性,或者可能包含复杂的数学函数。
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Effect of imperfect phase synchronization on the error rate performance of MPSK in Rayleigh, Rician and Nakagami fading channels
This paper provides a framework for error rate performance analysis of M-ary phase-shift keying (MPSK) systems with improper phase estimation over some common fading channels obeying Rayleigh, Rician, or Nakagami-m distribution. In addition, the channel is also perturbed by additive white Gaussian noise (AWGN). The phase distortions considered in the paper are random, unbiased, i.e. having zero-mean, and follows Tikhonov distribution. Analytical average symbol error probability (SEP) is calculated through a new efficient method and plotted as a function of signal to noise ratio (SNR) for different values of the modulation order, M. Our approach relies upon knowledge of the moment generating function (MGF) of the received SNR. The resulting expression is an integral over a finite range of integrands containing only elementary functions. Extensive Monte Carlo simulations were performed to validate the theoretical results. Although the SEP can be computed via direct numerical integration, the MGF method performs far better because direct integration suffers from numerical instability and inaccuracy due to the presence of infinite integration limits or may contain complex mathematical functions.
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