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Analysis of hybrid selection/maximal-ratio combining in correlated Nakagami fading

机译:相关Nakagami衰落中的混合选择/最大比合并分析

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摘要

We present an analysis of a hybrid selection/maximal-ratio combining diversity system over an evenly correlated slow frequency-nonselective Nakagami fading channel, where the correlation coefficient between any pair of the diversity branch gain amplitudes is the same, and all average branch signal-to-noise ratios (SNRs) are equal. In this system, the L branches with the largest instantaneous SNR out of N available branches are selected and combined using maximal-ratio combining. From the joint characteristic function (cf) of the instantaneous branch SNRs, we obtain an expression for the cf of the combiner output SNR as a series of elementary cfs. The expression can be conveniently used to obtain the symbol error probability of coherent detection of different M-ary modulation schemes. We illustrate our methodology using M-ary phase-shift keying as an example.
机译:我们对均匀相关的慢速非选择性Nakagami衰落信道上的混合选择/最大比率组合分集系统进行了分析,其中任何一对分集分支增益幅度之间的相关系数均相同,并且所有平均分支信号均信噪比(SNR)相等。在该系统中,从N个可用分支中选择具有最大瞬时SNR的L个分支,并使用最大比率组合进行组合。从瞬时分支SNR的联合特征函数(cf),我们得到组合器输出SNR cf的表达式,作为一系列基本cfs。该表达式可以方便地用于获得不同M进制调制方案的相干检测的符号错误概率。我们以M元相移键控为例来说明我们的方法。

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