基于自适应调制和最优功率分配的非再生中继网络性能评估的MGF方法

B. Modi, A. Annamalai, R. Palat
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引用次数: 4

摘要

本文分析了采用协同节点间最优功率分配策略和自适应m正交调幅(MQAM)技术的csi辅助协同放大转发(CAF)中继网络在中agami-m无线衰落环境下的性能。特别是,我们提倡基于总接收信噪比的边际矩生成函数(MGF)的简单而统一的数值方法,以获得平均误码率(ABER),平均可实现的频谱效率和中断概率性能指标的紧密近似值或上限和下限。所提出的分析框架具有足够的普遍性,可以在广泛的衰落分布(即不限于瑞利衰落)范围内表征自适应链路CAF中继网络的性能,这些网络具有跨空间分布的多样性路径的独立但非同分布(i.n.d)衰落统计量。数值结果表明,在实际的CAF中继拓扑中,与等功率分配情况相比,协作节点之间的最佳发射功率分配可以进一步大幅提高平均频谱效率,但代价是网络开销增加。通过蒙特卡罗模拟验证了分析结果的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An MGF approach for performance evaluation of non-regenerative cooperative relay networks with adaptive modulation and optimum power allocation in nakagami-m fading environments
This article analyzes the performance of CSI-assisted cooperative amplify-and-forward (CAF) relay networks that employ both the optimal power allocation strategy among collaborating nodes and adaptive M-ary quadrature amplitude modulation (MQAM) technique in Nakagami-m wireless fading environments. In particular, we advocate a simple yet unified numerical approach based on the marginal moment generating function (MGF) of the total received SNR to derive tight approximations or upper and lower bounds for the average bit error rate (ABER), mean achievable spectral efficiency, and outage probability performance metrics. The proposed analytical framework is sufficiently general to characterize the performance of adaptive-link CAF relay networks over a wide range of fading distributions (i.e., not restricted to Rayleigh fading) with independent but non-identically distributed (i.n.d) fading statistics across the spatially distributed diversity paths. Numerical results reveal that the optimal transmit power allocation among cooperative nodes in a practical CAF relay topologies could lead to a further substantial increase in the mean spectral efficiency compared to the equal power assignment case but at the expense of higher network overhead. The accuracies of our analytical results have been validated via Monte Carlo simulations.
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