Fair energy-efficient resource allocation based on queue balancing in data and energy integrated communication networks

Qin Yu, Yizhe Zhao, Lanxin Zhang, Kun Yang, S. Leng, Fan Wu
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引用次数: 3

Abstract

With the rapid advancement of wireless network technologies and the constant increase in the number of mobile devices, enormous amount of data is generated from a set of user equipments (UEs), such as mobile phones and wearable devices. How to power these devices wirelessly becomes a challenging issue. Meanwhile, data and energy integrated communication networks (DEINs) are emerging as a new type of wireless networks emphasizing on the cooperation between wireless information and energy transfer. This means that the DEINs can be a solution to tackle with powering UEs wirelessly and further achieving a higher data rate. However, there are no researches that have been studied about how to obtain the optimal scheme in DEINs under the consideration of data traffic. Hence, we propose a fair energy-efficient resource allocation algorithm for DEINs in this paper. Our objective is to optimize the energy efficiency with the consideration of providing fair queuing for data traffic by minimizing the queue length difference among the UEs' buffers. Besides, when designing the downlink energy beamforming and the downlink-uplink power-and-time allocation scheme, power sensitivity of conversion circuits and system stability are taken into account. Simulation results illustrate that the proposed resource allocation algorithm does not only improve the fairness among UEs by queue balancing, but also achieve close-to-optimal system energy efficiency by the beamforming design and resource allocation.
基于队列均衡的数据能源综合通信网中公平的节能资源分配
随着无线网络技术的飞速发展和移动设备数量的不断增加,一组用户设备,如移动电话和可穿戴设备,产生了大量的数据。如何为这些设备无线供电成为一个具有挑战性的问题。与此同时,数据与能源综合通信网络作为一种强调无线信息与能量传输协同的新型无线网络正在兴起。这意味着DEINs可以成为解决ue无线供电问题的解决方案,并进一步实现更高的数据速率。然而,在考虑数据流量的情况下,如何获得DEINs中的最优方案,目前还没有研究。因此,本文提出了一种公平高效的DEINs资源分配算法。我们的目标是优化能源效率,同时考虑通过最小化ue缓冲区之间的队列长度差异来为数据流量提供公平排队。此外,在设计下行能量波束形成和上下行功率时间分配方案时,还考虑了转换电路的功率灵敏度和系统稳定性。仿真结果表明,提出的资源分配算法不仅通过队列均衡提高了ue之间的公平性,而且通过波束形成设计和资源分配实现了接近最优的系统能量效率。
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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