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Throughput-save ratio optimization in wireless powered communication systems

机译:无线供电通信系统中的吞吐量节省比优化

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This paper deals with the idea of wireless energy harvesting and energy transfer used to establish communication between devices in a wireless network. Wireless energy harvesting and transfer has proved to be very advantageous in areas like WSN in which this technique not only improve the nodes lifetime but also makes the communication eco-friendly. A protocol namely save-then-transmit is used to accomplish the communication between the nodes in which some part of the time slot is devoted for energy harvesting and transfer with remaining part used for data transfer. Two models TCM-EH-ET and TRCM-EH-ET have been considered in which the nodes have no source of energy and they only get energy by natural means i.e. they harvest energy for recharging their batteries from the environment. An energy co-operation scheme is given, parameters involved in energy harvesting and transfer, i.e. energy transfer rate and save-ratio are optimized to maximize the overall throughput of the communication network. The proposed scheme is simulated on MATLAB R2013a, simulation results shows that the throughput of system with given energy cooperation scheme are better than the scheme without energy transfer and energy transfer with half save-ratio.
机译:本文涉及用于在无线网络中建立设备之间的通信的无线能量收集和能量转移的思想。无线能量收集和传输在WSN等领域被证明是非常有利的,其中该技术不仅改善节点寿命,而且还使通信环保。协议即可用于节省 - 发送的节点来实现节点之间的通信,其中致专用用于能量收集和传送的时间槽的某些部分与用于数据传输的剩余部分。已经考虑了两种型号TCM-EH-ET和TRCM-EH-ET,其中节点没有能量来源,它们仅通过自然方式获得能量,即它们收获能量,以从环境中充电。给出了能量合作方案,参数涉及能量收集和转移,即能量转移率和节省比率被优化,以最大化通信网络的整体吞吐量。在MATLAB R2013A上模拟了所提出的方案,仿真结果表明,具有给定能量合作方案的系统吞吐量优于没有能量转移和能量转移的方案,以半节省比率。

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