负载比例能量使用无线网络中的能量延迟权衡问题

Jing Chen, B. Sikdar
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引用次数: 1

摘要

可以使用诸如动态电压和频率缩放之类的硬件技术来减少网络接口的能量消耗并实现负载比例的能量使用。这些技术减慢了硬件的运行速度,因此它们的节能是以增加数据包延迟为代价的。本文提出了一种在无线网络中实现负载比例能量使用的同时解决能量延迟权衡的方法。该系统采用流水线方式实现介质访问控制(MAC)层的功能模块。每个功能块都有自己的作业队列,并被视为具有独立时钟的独立系统。每个功能块的时钟频率是根据其作业队列的长度动态选择的。虽然流水线实现减少了MAC层处理延迟,但使用基于队列长度的频率缩放提供了负载比例的能量使用并增强了系统的整体稳定性。通过大量的仿真验证了所提出系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addressing the energy-delay tradeoff in wireless networks with load-proportional energy usage
Hardware techniques such as dynamic voltage and frequency scaling may be used to reduce the energy consumption of network interfaces and achieve load-proportional energy usage. These techniques slow down the operation of the hardware and thus their power savings come at the cost of increased packet delays. This paper presents a methodology to address the energy-delay tradeoff while achieving load-proportional energy usage in wireless networks. The proposed system uses a pipelined implementation of the functional blocks of the medium access control (MAC) layer. Each functional block has its own job queue and is treated as an individual system with an independent clock. The clock frequency of each functional block is dynamically selected based on the length of its job queue. While the pipelined implementation reduces the MAC layer processing delays, the use of queue-length based frequency scaling provides load-proportional energy usage and enhances the overall stability of the system. The performance of the proposed system has been verified through extensive simulations.
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