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Proportional Fairness in Multi-Channel Multi-Rate Wireless Networks??Part II: The Case of Time-Varying Channels with Application to OFDM Systems

机译:多通道多速率无线网络中的比例公平第二部分:时变通道的情况及其在OFDM系统中的应用

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This is Part II of a two-part paper series that studies the use of the proportional fairness (PF) utility function as the basis for resource allocation and scheduling in multichannel multi-rate wireless networks. The contributions of Part II are twofold, (i) First, we extend the problem formulation, theoretical results, and algorithms to the case of time-varying channels, where opportunistic resource allocation and scheduling can be exploited to improve system performance. We lay down the theoretical foundation for optimization that "couples" the time-varying characteristic of channels with the requirements of the underlying applications into one consideration. In particular, the extent to which opportunistic optimization is possible is not just a function of how fast the channel characteristics vary, but also a function of the elasticity of the underlying applications for delayed resource allocation, (ii) Second, building upon our theoretical framework and results, we study subcarrier allocation and scheduling in orthogonal frequency division multiplexing (OFDM) cellular wireless networks. We introduce the concept of a W-normalized Doppler frequency to capture the extent to which opportunistic scheduling can be exploited to achieve throughput-fairness performance gain. We show that a "lookback PF" scheduling can strike a good balance between system throughput and fairness while taking the underlying application requirements into account.
机译:这是一个由两部分组成的论文系列的第二部分,该系列文章研究了使用比例公平(PF)效用函数作为多通道多速率无线网络中资源分配和调度的基础。第二部分的贡献是双重的:(i)首先,我们将问题的表述,理论结果和算法扩展到时变通道的情况,在时变通道中可以利用机会资源分配和调度来提高系统性能。我们为将通道的时变特性与基础应用程序的需求“耦合”在一起的优化奠定了理论基础。特别是,机会优化的范围不仅取决于信道特性变化的速度,还取决于延迟资源分配的基础应用程序的弹性,(ii)其次,建立在我们的理论框架之上因此,我们研究了正交频分复用(OFDM)蜂窝无线网络中的子载波分配和调度。我们引入W归一化多普勒频率的概念,以捕获机会主义调度可被利用以实现吞吐量公平性性能增益的程度。我们表明,“回溯PF”调度可以在考虑基本应用程序需求的同时,在系统吞吐量和公平性之间取得良好的平衡。

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