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Efficient power distribution model for IoT nodes driven by energy harvested from low power ambient RF signal

机译:由低功率环境RF信号收集的能量驱动的IoT节点高效功率分配模型

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摘要

In IoT scenario, wireless sensor nodes are acquiring data from remote location and transmitting it to the centralized node which process the data. Energy scavenging from the ambient RF source is the reliable, low cost approach and it keep node alive. Since available power is around -30 dbm for ambient RF, effective usage of battery by the node is important. In this paper, a power distribution method based on NASH bargaining solutions is proposed to efficiently use the nodes with the least available. Also the available antenna technologies are reviewed and optimal design is suggested for maximum extraction of energy from the low power RF signal. Using this approaches battery-powered sensor nodes can meet the design goals of life span, total price, special power perceiving, transmission coverage and consistency. The proposed method is validated with other reported methods and it has been found that the proposed NASH bargaining method significantly improve the energy efficiency, network life time and throughput rate.
机译:在物联网场景中,无线传感器节点正在从远程位置获取数据,并将其传输到处理数据的集中式节点。从周围的射频源清除能量是一种可靠的低成本方法,它可以使节点保持活动状态。由于环境RF的可用功率约为-30 dbm,因此节点有效使用电池非常重要。本文提出了一种基于NASH议价解决方案的功率分配方法,以有效利用可用节点最少的节点。还对可用的天线技术进行了评估,并建议了最佳设计,以最大程度地从低功率RF信号中提取能量。使用这种方法,电池供电的传感器节点可以满足使用寿命,总价格,特殊功率感知,传输覆盖范围和一致性的设计目标。所提出的方法已与其他已报道的方法进行了验证,并且发现所提出的NASH讨价还价方法显着提高了能源效率,网络寿命和吞吐率。

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