On the analysis of effective capacity over generalized fading channels

Zhe Ji, Chao Dong, Youzheng Wang, Jianhua Lu
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引用次数: 36

Abstract

Quality of service (QoS) guarantees play a significant role in next-generation wireless networks and the concept of effective capacity is proposed to characterize the maximum arrival rate that a time-varying fading channel can support under a delay-QoS constraint. However, the probability density function (PDF)-based analysis of effective capacity over generalized fading channels suffers from mathematical intractability in some situations of interest. In this paper, an approach based on the moment generating function (MGF) is introduced, which is suitable to deduce the closed-form expression for effective capacity computation. We start with the general case of adaptation transmission policy under the assumption of channel side information (CSI) only at the receiver, and then extend it to other adaptation policies. In addition, we derive unified and concise expressions of effective capacity by means of Fox's H function, which can be easily calculated, accommodating a wide variety of fading scenarios. Finally, the formulas of effective capacity are verified by numerical and simulation results.
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广义衰落信道的有效容量分析
服务质量(QoS)保证在下一代无线网络中发挥着重要作用,提出了有效容量的概念来表征时变衰落信道在延迟QoS约束下所能支持的最大到达率。然而,基于概率密度函数(PDF)的广义衰落信道有效容量分析在某些情况下存在数学上的难处。本文提出了一种基于矩生成函数(MGF)的方法,该方法适用于推导有效容量计算的封闭表达式。本文首先从假设接收端只有信道侧信息(CSI)的自适应传输策略的一般情况入手,然后将其推广到其他自适应传输策略。此外,我们还利用Fox的H函数导出了有效容量的统一简洁表达式,该表达式易于计算,适用于多种衰落场景。最后,通过数值和仿真结果对有效容量公式进行了验证。
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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