Closed-form performance analysis of generalized M-QAM over multihop weibull fading channels

A. Soulimani, M. Benjillali
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引用次数: 13

Abstract

In this paper, we present a closed-form performance analysis of multihop cooperative schemes in the context of the global effort towards the design of future 5G systems. We adopt the advocated Weibull channel fading model for its flexible ability to cover different channel conditions, and supported by many recent measurement campaigns in various emerging 5G scenarios. The analyzed scheme consists of multiple "Detect-and-Forward" relays with generalized high-order M-QAM transmissions. The end-to-end performance of the multihop communication is evaluated in terms of the outage probability, bit error rate, and ergodic capacity. For all these metrics, we present exact closed-form expressions, some in terms of the Meijer's G-function. Numerical results illustrate the analysis, and Monte-Carlo simulations assess the accuracy of our obtained results for different system and channel parameters.
广义M-QAM在多跳威布尔衰落信道上的封闭性能分析
在本文中,我们在全球努力设计未来5G系统的背景下,对多跳合作方案进行了封闭式性能分析。我们采用了威布尔信道衰落模型,因为它具有覆盖不同信道条件的灵活能力,并得到了最近在各种新兴5G场景中进行的许多测量活动的支持。所分析的方案由多个具有广义高阶M-QAM传输的“探测并转发”中继组成。多跳通信的端到端性能是根据中断概率、误码率和遍历容量来评估的。对于所有这些指标,我们给出了精确的封闭形式表达式,其中一些用梅杰g函数表示。数值结果验证了分析结果,并通过蒙特卡罗模拟对不同系统和信道参数下所得结果的准确性进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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