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首页> 外文期刊>IEEE transactions on wireless communications >QoS-Driven Energy-Efficient Power Control With Random Arrivals and Arbitrary Input Distributions
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QoS-Driven Energy-Efficient Power Control With Random Arrivals and Arbitrary Input Distributions

机译:具有随机到达和任意输入分布的QoS驱动的节能功率控制

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摘要

This paper studies energy-efficiency (EE) and throughput optimization in the presence of randomly arriving data and quality of service (QoS) constraints. For this purpose, maximum average arrival rates supported by transmitting signals with arbitrary input distributions are initially characterized in closed form by employing the effective bandwidth of time-varying sources (e.g., discrete-time Markov and Markov fluid sources, and discrete-time and continuous-time Markov modulated Poisson sources) and effective capacity of the time-varying wireless channel. Subsequently, EE is formulated as the ratio of the maximum average arrival rate to the total power consumption, in which circuit power is also taken into account. Following these characterizations, the optimal power control policies maximizing the EE or maximizing the throughput under a minimum EE constraint are obtained. Through numerical results, the performance of the optimal power control policies is evaluated for different signal constellations and is also compared with that of constant power transmission. The impact of QoS constraints, source characteristics, circuit power, input distributions on the EE, and the throughput is analyzed.
机译:本文研究在随机到达的数据和服务质量(QoS)约束下的能效(EE)和吞吐量优化。为此,通过使用时变源(例如,离散时间马尔可夫和马尔可夫流体源以及离散时间和连续源)的有效带宽,首先以封闭的形式来表征传输具有任意输入分布的信号所支持的最大平均到达率。时马尔可夫调制Poisson源)和时变无线信道的有效容量。随后,将EE公式化为最大平均到达率与总功耗的比率,其中还考虑了电路功率。根据这些特征,可以获得在最小EE约束下最大化EE或最大化吞吐量的最佳功率控制策略。通过数值结果,可以针对不同的信号星座图评估最佳功率控制策略的性能,并将其与恒定功率传输的性能进行比较。分析了QoS约束,源特性,电路功率,输入分布对EE和吞吐量的影响。

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