Optimal EE-delay relation in wireless systems

Changyang She, Chenyang Yang
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引用次数: 2

Abstract

It is widely accepted that a tradeoff exists between transmit power and average delay. In this paper, we consider wireless systems transmitting randomly arrived traffic over fading channels with statistical quality-of-service requirement, characterized by a delay bound and a delay bound violation probability. We study the relation between the maximal energy efficiency (EE) and the delay bound with given delay violation probability. We prove that the EE-delay tradeoff vanishes if the average total power consumption, including transmit and circuit powers of the base station, linearly increases with the average service/transmission rate. By taking massive multi-input-multi-output (MIMO) system as an example, we show that if the required total power consumption is a linear function of the service rate, the maximal EE is independent of the delay bound. If the required total power is strictly convex in the service rate, then the EE can be improved by extending the delay.
无线系统中最优ee -延迟关系
人们普遍认为在发射功率和平均延迟之间存在着一种权衡。本文考虑在衰落信道上传输随机到达业务的无线系统,该系统具有统计服务质量要求,其特征为时延界和时延界违规概率。研究了给定延迟违反概率下的最大能量效率与延迟界之间的关系。我们证明,如果基站的平均总功耗(包括发射和电路功率)随平均服务/传输速率线性增加,则ee -延迟权衡消失。以大规模多输入多输出(MIMO)系统为例,证明了如果所需总功耗是服务速率的线性函数,则最大EE与延迟界无关。如果所需总功率在服务速率中严格凸,则可以通过延长延迟来提高EE。
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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