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Unified error probability analysis for generalized selection combining in Nakagami fading channels

机译:中上衰落信道中广义选择组合的统一误差概率分析

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We study generalized selection combining (GSC) schemes in independent Nakagami fading channels, where N diversity branches with the largest instantaneous signal-to-noise ratios (SNRs) are selected from the total of L (N/spl les/L) branches and then coherently or noncoherently combined. We propose two different techniques to derive the moment generating function (MGF) expressions for the GSC output SNR in generalized Nakagami fading channels, where there are distinct and noninteger fading severity parameters, as well as different average SNRs in different diversity branches. For arbitrary fading severity parameter m/sub k/, k=1, /spl middot//spl middot//spl middot/L, the MGF expression is given in a summation of N-dimensional definite integrals with the limits independent of SNR or channel parameters, and therefore can be evaluated very efficiently with numerical methods. Furthermore, for integer m/sub k/ closed-form MGF expressions are derived. Specializations of our results to Rayleigh channels and independent identically distributed (i.i.d.) Nakagami channels are presented, which are either new or equivalent to previously published results. Using the newly derived MGF expression, we provide a unified error probability analysis for many coherent and noncoherent modulation/detection schemes.
机译:我们研究了独立的Nakagami衰落信道中的广义选择组合(GSC)方案,其中从L个分支(N / spl les / L)的总数中选择具有最大瞬时信噪比(SNR)的N个分集分支,然后相干或非相干组合。我们提出了两种不同的技术来推导广义Nakagami衰落信道中GSC输出SNR的矩生成函数(MGF)表达式,其中存在不同且非整数的衰落严重性参数,以及不同分集分支中的不同平均SNR。对于任意衰落严重性参数m / sub k /,k = 1,/ spl middot // spl middot // spl middot / L,MGF表达式以N维定积分的总和给出,其极限独立于SNR或通道参数,因此可以使用数值方法非常有效地进行评估。此外,对于整数m / sub k /,可以导出闭式MGF表达式。展示了我们针对Rayleigh频道和独立的同分布(i.i.d.)Nakagami频道的结果的专业化功能,这些功能是新的或等同于先前发布的结果。使用新获得的MGF表达式,我们为许多相干和非相干调制/检测方案提供了统一的错误概率分析。

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