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Distributed Sensor Nodes Charged by Mobile Charger with Directional Antenna and by Energy Trading for Balancing

机译:带有定向天线的移动充电器和用于平衡的能量交易对分布式传感器节点进行充电

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摘要

Provision of energy to wireless sensor networks is crucial for their sustainable operation. Sensor nodes are typically equipped with batteries as their operating energy sources. However, when the sensor nodes are sited in almost inaccessible locations, replacing their batteries incurs high maintenance cost. Under such conditions, wireless charging of sensor nodes by a mobile charger with an antenna can be an efficient solution. When charging distributed sensor nodes, a directional antenna, rather than an omnidirectional antenna, is more energy-efficient because of smaller proportion of off-target radiation. In addition, for densely distributed sensor nodes, it can be more effective for some undercharged sensor nodes to harvest energy from neighboring overcharged sensor nodes than from the remote mobile charger, because this reduces the pathloss of charging signal due to smaller distances. In this paper, we propose a hybrid charging scheme that combines charging by a mobile charger with a directional antenna, and energy trading, e.g., transferring and harvesting, between neighboring sensor nodes. The proposed scheme is compared with other charging scheme. Simulations demonstrate that the hybrid charging scheme with a directional antenna achieves a significant reduction in the total charging time required for all sensor nodes to reach a target energy level.
机译:向无线传感器网络提供能量对于它们的可持续运行至关重要。传感器节点通常配备电池作为其运行能源。但是,当传感器节点位于几乎无法接近的位置时,更换传感器电池会导致高昂的维护成本。在这种情况下,通过带有天线的移动充电器对传感器节点进行无线充电可能是一种有效的解决方案。当为分布式传感器节点充电时,定向天线而不是全向天线的能量效率更高,因为偏离目标的辐射比例较小。另外,对于密集分布的传感器节点,某些充电不足的传感器节点从相邻的过度充电的传感器节点采集能量比从远程移动充电器采集能量更为有效,因为这会减小距离导致的充电信号路径损耗。在本文中,我们提出了一种混合充电方案,该方案将移动充电器与定向天线的充电以及相邻传感器节点之间的能量交易(例如转移和收获)相结合。将该方案与其他计费方案进行了比较。仿真表明,带有定向天线的混合充电方案可显着减少所有传感器节点达到目标能量水平所需的总充电时间。

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