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首页> 外文期刊>Fortschritte der Physik >Multiantenna Spectrum Sensing Over Correlated Nakagami-m Channels With MRC and EGC Diversity Receptions
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Multiantenna Spectrum Sensing Over Correlated Nakagami-m Channels With MRC and EGC Diversity Receptions

机译:用MRC和EGC多样性接收相关的NAKAGAMI-M通道的多亮度光谱传感

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摘要

Increasing number of antennas are closely packed in emerging multiantenna systems and correlation among them can no longer be ignored. In this paper, such a multiantenna spectrum sensing system is investigated considering dual, triple, four and up to infinite number of correlated antenna branches. Constant, arbitrary and exponential correlation among the antenna branches are considered. Closed form expressions for the detection probability, in terms of the confluent hypergeometric function, is derived assuming maximal ratio combining (MRC) and equal gain combining (EGC) diversity techniques in Nakagami-m multipath fading channel. Numerical results quantify the interbranch correlation that impacts the detector performance significantly. However, results also show that this effect could be compensated by employing the appropriate diversity combining technique and by increasing the diversity branches. Furthermore, we find that at high m values (Rician like channel), low false alarm probability and highly correlated environments, EGC which is a simpler scheme performs as good as MRC which is a more complex scheme.
机译:越来越多的天线密集在新兴的多天线系统中,并且它们之间的相关性不能再被忽略。在本文中,考虑到双重,三,四和最多的相关天线分支来研究这种多天线谱感测系统。考虑天线分支之间的恒定,任意和指数相关性。假设NAKAGAMI-M多径衰落通道中的最大比率(MRC)和等于增益组合(EGC)分集技术,导出用于汇合过度函数的检测概率的闭合形式表达式。数值结果量化了显着影响检测器性能的非洲共识相关性。然而,结果还表明,通过采用适当的多样性组合技术和增加多样性分支,可以补偿这种效果。此外,我们发现,在高m值(riician等信道),低误报概率和高度相关的环境,EGC,其是更简单的方案,执行与MRC一样好,这是一种更复杂的方案。

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