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Relative Localization in Wireless Sensor Networks for Measurement of Electric Fields under HVDC Transmission Lines

机译:HVDC输电线路下用于测量电场的无线传感器网络中的相对定位

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摘要

In the wireless sensor networks (WSNs) for electric field measurement system under the High-Voltage Direct Current (HVDC) transmission lines, it is necessary to obtain the electric field distribution with multiple sensors. The location information of each sensor is essential to the correct analysis of measurement results. Compared with the existing approach which gathers the location information by manually labelling sensors during deployment, the automatic localization can reduce the workload and improve the measurement efficiency. A novel and practical range-free localization algorithm for the localization of one-dimensional linear topology wireless networks in the electric field measurement system is presented. The algorithm utilizes unknown nodes' neighbor lists based on the Received Signal Strength Indicator (RSSI) values to determine the relative locations of nodes. The algorithm is able to handle the exceptional situation of the output permutation which can effectively improve the accuracy of localization. The performance of this algorithm under real circumstances has been evaluated through several experiments with different numbers of nodes and different node deployments in the China State Grid HVDC test base. Results show that the proposed algorithm achieves an accuracy of over 96% under different conditions.
机译:在高压直流(HVDC)传输线下的用于电场测量系统的无线传感器网络(WSN)中,必须获得具有多个传感器的电场分布。每个传感器的位置信息对于正确分析测量结果至关重要。与现有的在部署过程中通过手动标记传感器来收集位置信息的方法相比,自动定位可以减少工作量并提高测量效率。提出了一种新颖实用的无距离定位算法,用于电场测量系统中一维线性拓扑无线网络的定位。该算法根据接收信号强度指示器(RSSI)值利用未知节点的邻居列表来确定节点的相对位置。该算法能够处理输出排列的异常情况,可以有效地提高定位精度。在中国国家电网高压直流输电试验基地中,通过不同节点数和不同节点部署的多次实验,评估了该算法在实际情况下的性能。结果表明,该算法在不同条件下的准确率均超过96%。

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