具有统计QoS要求的无线系统节能资源分配

Changyang She, Chenyang Yang, Lingjia Liu
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引用次数: 1

摘要

本文力求通过对时延敏感的业务进行资源分配,在满足统计服务质量(QoS)要求的情况下,保证时延界和较小的违规概率,从而提高无线系统的能源效率。为了避免服务随机流量时的能量浪费,我们将有效带宽和有效容量框架下表征统计QoS保障的关键参数QoS指数转化为依赖于队列长度的QoS函数。提出了一种基于队列长度的资源分配策略设计方法,在QoS函数约束下最大化EE。以服务泊松源的OFDM系统为例,推导了一种子载波上发射功率恒定的封闭形式子载波分配策略。仿真和数值结果表明,该策略的EE远高于文献中考虑统计QoS提供的相关策略,并且非常接近延迟界为无穷大时的EE上界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-efficient resource allocation of wireless systems with statistical QoS requirement
This paper strives to improve the energy efficiency (EE) of wireless systems by resource allocation for delay sensitive traffic with the statistical quality of service (QoS) requirement, where a delay bound and a small violation probability is ensured. To avoid wasting energy when serving random traffic, we turn the QoS exponent, a key parameter to characterize statistical QoS guarantee under the framework of effective bandwidth and effective capacity, into a QoS function dependent on the queue length. A method to design queue length based resource allocation strategy is proposed, which maximizes the EE under the constraint on the QoS function. By taking an OFDM system serving Poisson source as an example, a closed form subcarrier allocation strategy with constant transmit power on each subcarrier is derived. Simulation and numerical results show that the EE achieved by the proposed strategy is much higher than the relevant strategies in the literature considering statistical QoS provision, and is very close to the EE upper bound achieved when the delay bound is infinite.
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