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Implementation of multi-path energy routing

机译:多路径能量路由的实现

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摘要

Harvesting energy from radio frequency (RF) waves brings us closer to achieving the goal for perpetual operation of a wireless sensor network (WSN) by replenishing the batteries of the sensor nodes. However, due to restrictions on the maximum transmitted power, path loss, and receiver sensitivity, only a small amount of energy can be harvested. While a dedicated RF source alleviates the problem to some extent, novel techniques are required to boost the energy transfer efficiency of the source. In this paper, we provide the first experimental demonstration of multi-path energy routing (MPER) for the case of a sparsely distributed WSNs and show its improved performance over direct energy transfer (DET). In addition, we extend this concept to the case of densely distributed WSNs and experimentally demonstrate and compare the gains obtained by 2- and 3-path energy routing over DET. Our experimental results show that significant energy gains can be achieved in a dense network deployment even when the node to be charged is partially blocked by the neighboring nodes.
机译:通过补充传感器节点的电池,从射频(RF)波中收集能量使我们更接近实现无线传感器网络(WSN)永久运行的目标。但是,由于对最大发射功率,路径损耗和接收器灵敏度的限制,只能收集少量能量。尽管专用的RF源在某种程度上缓解了该问题,但仍需要新颖的技术来提高源的能量传输效率。在本文中,我们为稀疏分布的WSN提供了多路径能量路由(MPER)的第一个实验演示,并展示了其比直接能量传输(DET)更高的性能。另外,我们将此概念扩展到密集分布的WSN的情况,并通过实验证明和比较通过DET的2路径和3路径能量路由获得的增益。我们的实验结果表明,即使要充电的节点被相邻节点部分阻止,在密集的网络部署中也可以实现显着的能量增益。

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