时延约束速率和相关衰落信道的功率自适应

A. Karmokar, D. Djonin, V. Bhargava
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引用次数: 36

摘要

针对MQAM系统的最优延迟约束速率自适应和i型混合ARQ系统的最优功率自适应,提出了一种基于一般马尔可夫决策过程的框架。该框架可应用于相关衰落信道上的自适应资源分配。结果表明,利用线性规划技术求解适当表述的马尔可夫决策过程可以得到最优的速率和功率控制。对于自适应MQAM系统,最佳速率分配策略依赖于当前缓冲区占用情况和通道状态。对于混合ARQ系统,功率控制律可以表示为依赖于当前缓冲区占用率以及信道和动作观察的历史记录。本文的研究结果对开发支持延迟敏感多媒体业务的现代无线标准具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay constrained rate and power adaptation over correlated fading channels
We present a general Markov decision process based framework for the identification of optimal delay-constrained rate adaptation for MQAM systems and power adaptation for type-I hybrid ARQ systems. This framework can be applied to adaptive resource allocation over correlated fading channels. It is shown that the optimal rate and power control can be obtained by solving the appropriately formulated Markov decision processes using linear programming techniques. In the case of adaptive MQAM systems, the optimal rate allocation policy is dependent on the current buffer occupancy and the channel state. For hybrid ARQ systems the power control law can be formulated as being dependent on the current buffer occupancy and the history record of channel and action observations. The results of this paper are of importance for the development of modern wireless standards that support delay sensitive multimedia traffic.
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