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Efficient Mobile Energy Replenishment Scheme Based on Hybrid Mode for Wireless Rechargeable Sensor Networks

机译:基于混合模式的无线可充电传感器网络高效移动能量补充方案

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摘要

Wireless charging is a greatly promising technology to resolve the energy limitation problem suffered by wireless sensor networks. In this paper, we propose an efficient mobile energy replenishment scheme based on hybrid mode, namely MERSH, which merges the advantages of the existing online and offline modes to improve the energy supplement efficiency and meanwhile to adapt well to the energy consumption dynamicity of sensors to achieve sustainable operation of wireless sensor networks. In MERSH, nodes are allowed to proactively send charging requests to the mobile charger, called MC, when the residual energy goes down a lower level. With a special-designed low-cost method, MERSH can plan an optimized path for MC every time when it charges the sensors that have sent charging requests. Moreover, to ensure energy supplement and avoid node failure due to the high dynamic energy consumption, MERSH dynamically adjusts the charging duration of each node along the calculated charging path according to its maximum tolerate charging latency and minimum charging wait time. The theoretic analysis shows that MERSH guarantees MC to move along the optimized charging path, which reduces the whole charging cost. Through extensive simulation results, we validate the effectiveness of the proposed MERSH.
机译:无线充电是解决无线传感器网络遭受的能量限制问题的非常有前途的技术。在本文中,我们提出了一种基于混合模式的高效移动能源补充方案,即MERSH,该方案融合了现有在线和离线模式的优点,以提高能量补充效率,同时又很好地适应传感器的能耗动态。实现无线传感器网络的可持续运营。在MERSH中,当剩余能量下降到较低水平时,允许节点主动向移动充电器(称为MC)发送充电请求。通过特殊设计的低成本方法,MERSH可以在每次为发送了充电请求的传感器充电时为MC设计一条最佳路径。而且,为了确保能量补充并避免由于高动态能量消耗而导致节点故障,MERSH根据其最大容许充电等待时间和最小充电等待时间来沿计算的充电路径动态调整每个节点的充电持续时间。理论分析表明,MERSH保证了MC沿着优化的充电路径运动,从而降低了整个充电成本。通过广泛的仿真结果,我们验证了提出的MERSH的有效性。

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