Efficient Power Control over Fading Channels

A. Kotelba, A. Mämmelä
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引用次数: 5

Abstract

This paper introduces a novel concept of efficient power control in nonergodic fading channels. We use the risk-reward approach to quantitatively describe the performance of power control schemes. A power control scheme is said to be efficient if it minimizes the risk for a given level of reward. The reward and risk are measured, respectively, as the expected value of the link spectral efficiency in excess of some predefined target value and the below-target semideviation of the link spectral efficiency distribution. Furthermore, we introduce a novel fundamental limit on the performance of adaptive power control schemes. The new fundamental limit, which we call the efficient frontier, is the set of all efficient power control schemes. We analytically derive the adaptive power control rule that achieves the fundamental limit. We show that no power control scheme can be constructed with the performance above the efficient frontier. The numerical results suggest that various state-of-the-art power control schemes are suboptimal, i.e., their risk-reward performance is below the efficient frontier.
衰落信道的有效功率控制
本文提出了一种非遍历衰落信道中有效功率控制的新概念。我们使用风险-回报方法来定量描述功率控制方案的性能。如果一个功率控制方案在给定的奖励水平下使风险最小化,那么它就是有效的。回报和风险分别以链路频谱效率的期望值超过某个预定目标值和链路频谱效率分布的低于目标的半规化来衡量。此外,我们还介绍了自适应功率控制方案性能的一个新的基本限制。新的基本极限,我们称之为有效边界,是所有有效功率控制方案的集合。解析推导出达到基本极限的自适应功率控制规则。结果表明,任何功率控制方案的性能都不能超过有效边界。数值结果表明,各种最先进的功率控制方案都是次优的,即它们的风险回报性能低于有效边界。
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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