Energy-efficient power control with finite discrete inputs under quality of service constraints

Gozde Ozcan, M. C. Gursoy
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引用次数: 1

Abstract

This paper presents an energy-efficient optimal power control policy with finite discrete inputs in the presence of statistical quality of service (QoS) limitations. In particular, an optimization problem is formulated to maximize the energy efficiency (EE) of the system, which is defined as the ratio of the effective capacity achieved with finite discrete inputs to the total power consumption. The circuit power consumption is explicitly considered in the total power expenditure. Subsequently, the optimal power control is derived using fractional programming. The resulting optimal power control strategy is further analyzed in two limiting cases, namely, the extremely stringent QoS constraints and looser QoS constraints. Through numerical results, the EE attained with the proposed optimal power control policy and constant power scheme is compared. Also, the effects of QoS constraints and signaling distribution on the maximum achievable EE are evaluated.
服务质量约束下有限离散输入的节能功率控制
提出了一种具有有限离散输入且存在统计服务质量(QoS)限制的节能最优功率控制策略。特别是,制定了一个优化问题,以最大限度地提高系统的能源效率(EE),其定义为有限离散输入下实现的有效容量与总功耗的比值。电路功耗在总功耗中明确考虑。然后,利用分式规划方法推导出最优功率控制。在QoS约束极为严格和QoS约束较为宽松两种限制情况下,进一步分析了得到的最优功率控制策略。通过数值计算,比较了所提出的最优功率控制策略和恒功率方案所获得的能效。此外,还评估了QoS约束和信令分配对最大可实现EE的影响。
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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