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A Novel Non-Line-of-Sight Indoor Localization Method for Wireless Sensor Networks

机译:无线传感器网络的一种新型的非视距室内定位方法

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The localization technology is the essential requirement of constructing a smart building and smart city. It is one of the most important technologies for wireless sensor networks (WSNs). However, when WSNs are deployed in harsh indoor environments, obstacles can result in non-line-of-sight (NLOS) propagation. In addition, NLOS propagation can seriously reduce localization accuracy. In this paper, we propose a NLOS localization method based on residual analysis to reduce the influence of NLOS error. The time of arrival (TOA) measurement model is used to estimate the distance. Then, the NLOS measurement is identified through the residual analysis method. Finally, this paper uses the LOS measurements to establish the localization objective function and proposes the particle swarm optimization with a constriction factor (PSO-C) method to compute the position of an unknown node. Simulation results show that the proposed method not only effectively identifies the LOS/NLOS propagation condition but also reduces the influence of NLOS error.
机译:本地化技术是建设智能建筑和智慧城市的基本要求。它是无线传感器网络(WSN)的最重要技术之一。但是,当WSN部署在恶劣的室内环境中时,障碍物可能导致非视线(NLOS)传播。另外,NLOS传播会严重降低定位精度。本文提出一种基于残差分析的NLOS定位方法,以减少NLOS误差的影响。到达时间(TOA)测量模型用于估计距离。然后,通过残差分析方法识别NLOS测量值。最后,本文利用LOS测量方法建立了定位目标函数,并提出了利用压缩因子(PSO-C)方法进行粒子群优化的方法来计算未知节点的位置。仿真结果表明,该方法不仅有效识别了LOS / NLOS的传播条件,而且减小了NLOS误差的影响。

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