Q(√x)函数的有效近似和一般误码率性能分析

R. Alkurd, I. Abualhaol, S. Muhaidat
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引用次数: 5

摘要

本文给出了高斯Q函数的一种新的近似形式Q(√x)。在精度和适用性方面,将所提出的近似与其他已知的q函数的闭形式近似进行了比较。这种近似可以有效地用于简化没有显式解的棘手问题。利用高斯有限混合分量的广义概率密度函数(PDF)近似,推导出相干调制技术误码率(BER)的广义封闭表达式。推导出的表达式在Nakagami-m和Weibull衰落信道上进行了计算。为了验证导出的表达式,在Nakagami-m和Weibull衰落信道上提供了平均误码率表达式的蒙特卡罗模拟。假设衰落信道统计量采用高斯有限混合模型,则推导出的平均SER表达式可用于评估任何相干调制技术和任何衰落信道上的误码率性能。
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An effcient approximation of Q(√x) function and general BER performance analysis
In this paper, a novel approximation for the Gaussian Q-function in the form of Q(√x) is presented. The proposed approximation is compared with other known closed-form approximations of the Q-function in terms of accuracy and applicability. This approximation can be effciently used to simplify intractable problems which do not have explicit solutions. The approximation of the generalized probability density function (PDF) using Gaussian fnite mixture components is utilized with the proposed approximation to derive a generalized closed-form expression for the Bit Error Rate (BER) for coherent modulation techniques. The derived expression is evaluated over Nakagami-m and Weibull fading channels. Monte Carlo simulation of the average BER expression is provided over Nakagami-m and Weibull fading channels in order to validate the derived expression. The derived average SER expression can be used by engineers to evaluate the BER performance for any coherent modulation technique and over any fading channel given that the fading channel statistics are modeled using Gaussian fnite mixture.
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