Efficient Scheduling for Target Coverage in Energy Harvesting Wireless Sensor Network

H. Goyal, S. Tripathi
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引用次数: 2

Abstract

A Wireless Sensor Network (WSN) is a group of a fixed number of sensor nodes that are used for monitoring and transmitting data for a particular target to a base station. One major caveat of WSN is its limited time availability due to the finite energy capacity of the sensor nodes deployed on any flat surface. This can lead to network unavailability in practical scenarios where the sensor nodes cannot be easily recharged or replaced. Hence, researchers come up with Energy Harvesting Sensor Networks that use Environmental energy to recharge. An algorithm for switching and scheduling written for a typical WSN is not feasible because of the new charging factors. This increases the demand for a scheduling algorithm that considers various energy parameters like energy consumption and recharge rates. Therefore, we propose a novel algorithm that provides the set of active nodes for all target points in the network and therefore improves the network lifetime.
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能量采集无线传感器网络中目标覆盖的高效调度
无线传感器网络(WSN)是一组固定数量的传感器节点,用于监测特定目标并将数据传输到基站。WSN的一个主要警告是其有限的时间可用性,因为部署在任何平面上的传感器节点的能量容量有限。在实际场景中,这可能导致网络不可用,因为传感器节点不容易充电或更换。因此,研究人员提出了利用环境能量进行充电的能量收集传感器网络。由于新的收费因素,为典型WSN编写的切换和调度算法不可行。这增加了对考虑各种能源参数(如能源消耗和充电率)的调度算法的需求。因此,我们提出了一种新的算法,该算法为网络中的所有目标点提供活动节点集,从而提高了网络的生存时间。
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