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Efficient Energy Supply Using Mobile Charger for Solar-Powered Wireless Sensor Networks

机译:使用移动充电器为太阳能无线传感器网络提供高效能源

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摘要

An energy-harvesting wireless sensor network mitigates the energy shortage problems of existing battery-based wireless sensors; however, its hotspot area sensor nodes still experience 3 blackouts, thereby reducing network connectivity. Techniques that transfer energy directly to sensor nodes using wireless power transfer (WPT) have been studied in recent years to address this issue. In this paper, we propose a technique that uses a drone (quadcopter), which is a type of unmanned aerial vehicle (UAV), as a mobile sink. The drone selects and manages anchor nodes that aggregate data temporarily, collects data by visiting the anchor nodes to mitigate the hotspot issue, and then prevents blackouts by supplying energy to low-energy nodes, thereby improving network connectivity. The anchor nodes are carefully selected after considering the energy capacity of the drone, the size of the network, the amount of collected data, and the energy consumed by the nodes to increase the network’s energy efficiency. Furthermore, energy is transferred from the drone to the anchor nodes to support their energy consumption. In our study, this method reduced the blackouts of sensor nodes, including anchor nodes, in hotspot regions, and increased network connectivity, thereby improving the amount of data gathered by the mobile sink.
机译:能量收集无线传感器网络可缓解现有基于电池的无线传感器的能源短缺问题;但是,其热点区域传感器节点仍然遇到3次中断,从而降低了网络连接性。近年来,已经研究了使用无线电力传输(WPT)将能量直接传输到传感器节点的技术,以解决此问题。在本文中,我们提出了一种使用无人机(quadcopter)作为移动水槽的技术,无人机是一种无人机。无人机选择并管理临时聚集数据的锚节点,通过访问锚节点来收集数据以减轻热点问题,然后通过向低能耗节点供应能量来防止停电,从而改善网络连接。在考虑无人机的能量容量,网络的大小,收集的数据量以及节点消耗的能量以提高网络的能效之后,会仔细选择锚点节点。此外,能量从无人机转移到锚节点以支持其能耗。在我们的研究中,此方法减少了热点区域中传感器节点(包括锚节点)的停电,并增加了网络连接性,从而提高了移动宿收集的数据量。

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