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A Decentralized Positioning Scheme Based on Recursive Weighted Least Squares Optimization for Wireless Sensor Networks
Journal article   Peer reviewed

A Decentralized Positioning Scheme Based on Recursive Weighted Least Squares Optimization for Wireless Sensor Networks

Chin-Liang Wang, Dong-Shing Wu, Shih-Cheng Chen and Kai-Jie Yang
IEEE Transactions on Vehicular Technology, Vol.64(10), pp.4887-4893
01/10/2015

Abstract

Decentralized methods recursive weighted leastsquares optimization target positioning wireless sensor networks
This paper presents a new positioning scheme based on recursive weighted least squares (RWLS) optimization for wireless sensor networks. The proposed scheme is derived from minimizing a recursive-in-time cost function and then realized in an iterative decentralized manner. The target location is computed iteratively by taking a weighted average of the local estimates according to the reliability information, where a sensor computes a new estimate based on its own observation and the previous sensor's estimate. Computer simulation results demonstrate that the proposed scheme has better positioning accuracy than previous related methods.

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