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Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control

机译:绿色无线传感器网络中的最佳功率控制,无线能量收集,唤醒无线电和传输控制

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摘要

Wireless sensor networks (WSNs) are autonomous networks of spatially distributed sensor nodes which are capable of wirelessly communicating with each other in a multi-hop fashion. Among different metrics, network lifetime and utility and energy consumption in terms of carbon footprint are key parameters that determine the performance of such a network and entail a sophisticated design at different abstraction levels. In this paper, wireless energy harvesting (WEH), wake-up radio (WUR) scheme and error control coding (ECC) are investigated as enabling solutions to enhance the performance of WSNs while reducing its carbon footprint. Specifically, a utility-lifetime maximization problem incorporating WEH, WUR and ECC, is formulated and solved using distributed dual subgradient algorithm based on Lagrange multiplier method. It is discussed and verified through simulation results to show how the proposed solutions improve network utility, prolong the lifetime and pave the way for a greener WSN by reducing its carbon footprint.
机译:无线传感器网络(WSN)是空间分布的传感器节点的自治网络,这些节点能够以多跳方式彼此进行无线通信。在不同的指标中,以碳足迹为单位的网络寿命,效用和能源消耗是决定此类网络性能并在不同抽象级别进行复杂设计的关键参数。在本文中,研究了无线能量收集(WEH),唤醒无线电(WUR)方案和差错控制编码(ECC)作为使解决方案能够增强WSN的性能同时减少其碳足迹的解决方案。具体而言,利用基于拉格朗日乘数法的分布式双次梯度算法,提出并解决了结合了WEH,WUR和ECC的效用最大化问题。通过仿真结果对它进行了讨论和验证,以显示所提出的解决方案如何提高网络实用性,延长使用寿命并通过减少碳足迹来为绿色WSN铺平道路。

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