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无线可充电传感器网络的移动充电策略

Mobile Charging Strategy for Wireless Rechargeable Sensor Networks.

作者信息

Chen Tzung-Shi, Chen Jen-Jee, Gao Xiang-You, Chen Tzung-Cheng

机构信息

Department of Computer Science and Information Engineering, National University of Tainan, Tainan 700301, Taiwan.

College of Artificial Intelligence, National Yang Ming Chiao Tung University, Hsinchu City 300093, Taiwan.

出版信息

Sensors (Basel). 2022 Jan 4;22(1):359. doi: 10.3390/s22010359.

Abstract

In a wireless sensor network, the sensing and data transmission for sensors will cause energy depletion, which will lead to the inability to complete the tasks. To solve this problem, wireless rechargeable sensor networks (WRSNs) have been developed to extend the lifetime of the entire network. In WRSNs, a mobile charging robot () is responsible for wireless charging each sensor battery and collecting sensory data from the sensor simultaneously. Thereby, needs to traverse along a designed path for all sensors in the WRSNs. In this paper, dual-side charging strategies are proposed for traversal planning, which minimize the traversal path length, energy consumption, and completion time. Based on dual-side charging, neighboring sensors in both sides of a designated path can be wirelessly charged by and sensory data sent to simultaneously. The constructed path is based on the power diagram according to the remaining power of sensors and distances among sensors in a WRSN. While the power diagram is built, charging strategies with dual-side charging capability are determined accordingly. In addition, a clustering-based approach is proposed to improve minimizing moving total distance, saving charging energy and total completion time in a round. Moreover, integrated strategies that apply a clustering-based approach on the dual-side charging strategies are presented in WRSNs. The simulation results show that, no matter with or without clustering, the performances of proposed strategies outperform the baseline strategies in three respects, energy saving, total distance reduced, and completion time reduced for in WSRNs.

摘要

在无线传感器网络中,传感器的传感和数据传输会导致能量消耗,进而导致无法完成任务。为了解决这个问题,人们开发了无线可充电传感器网络(WRSN)来延长整个网络的寿命。在WRSN中,一个移动充电机器人负责对每个传感器电池进行无线充电,并同时从传感器收集传感数据。因此,需要沿着为WRSN中的所有传感器设计的路径进行遍历。本文针对遍历规划提出了双侧充电策略,该策略可最小化遍历路径长度、能量消耗和完成时间。基于双侧充电,指定路径两侧的相邻传感器可以由移动充电机器人进行无线充电,并同时将传感数据发送给移动充电机器人。构建的路径是根据WRSN中传感器的剩余电量和传感器之间的距离基于功率图生成的。在构建功率图时,相应地确定具有双侧充电能力的充电策略。此外,还提出了一种基于聚类的方法,以在一轮中进一步最小化移动总距离、节省充电能量和总完成时间。此外,还在WRSN中提出了在双侧充电策略上应用基于聚类方法的集成策略。仿真结果表明,无论有无聚类,所提策略在节能、减少总距离和缩短WSRN中移动充电机器人的完成时间这三个方面的性能均优于基线策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0fc/8749582/2f931f3c3b4d/sensors-22-00359-g001.jpg

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