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Level Crossing Rate and Average Fade Duration of EGC Systems With Cochannel Interference in Rayleigh Fading

机译:瑞利衰落中具有同信道干扰的EGC系统的平交速率和平均衰落持续时间

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摘要

Both the first-order signal statistics (e.g., the outage probability) and the second-order signal statistics [e.g., the average level crossing rate (LCR) and the average fade duration (AFD)] are important design criteria and performance measures for wireless communication systems, including the equal gain combining (EGC) systems in the presence of the cochannel interference (CCI). Although the analytical expressions for the outage probability of the coherent EGC systems are exposed to CCI and various fading channels are already known, the respective expressions for the average LCR and the AFD are not available in the literature. This paper presents such analytical expressions for the Rayleigh fading channel, which are obtained by utilizing a novel analytical approach that does not require the explicit expression for the joint probability density function (pdf) of the instantaneous output signal-to-interference ratio and its time derivative. Applying the characteristic function method and the Beaulieu series, we determined the average LCR and the AFD at the output of an interference-limited EGC system with an arbitrary diversity order and an arbitrary number of cochannel interferers in the form of an infinite integral and infinite series. For the dual diversity case, the respective expressions are derived in closed forms in terms of the gamma and beta functions.
机译:一阶信号统计量(例如,中断概率)和二阶信号统计量(例如,平均电平交叉速率(LCR)和平均衰落持续时间(AFD))都是无线的重要设计标准和性能指标通信系统,包括在同信道干扰(CCI)存在的情况下的等增益合并(EGC)系统。尽管相干EGC系统的中断概率的分析表达式已暴露于CCI,并且已知各种衰落信道,但平均LCR和AFD的相应表达式在文献中不可用。本文介绍了瑞利衰落信道的此类解析表达式,这些表达式是通过使用新颖的解析方法获得的,该解析方法不需要对瞬时输出信噪比及其时间的联合概率密度函数(pdf)进行明确表示。衍生物。应用特征函数方法和Beaulieu级数,我们确定了具有无限分集阶数和任意数量的同信道干扰源的无穷大整数阶和无穷级数干扰受限的EGC系统输出端的平均LCR和AFD 。对于双分集的情况,根据gamma和beta函数以闭式导出各个表达式。

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