DocumentCode :
177945
Title :
Novel closed-form auxiliary variables based algorithms for sensor node localization using AOA
Author :
Hua-Jie Shao ; Xiao-Ping Zhang ; Zhi Wang
Author_Institution :
Dept. of Control Sci. & Eng., Zhejiang Univ., Hangzhou, China
fYear :
2014
fDate :
4-9 May 2014
Firstpage :
1414
Lastpage :
1418
Abstract :
Node localization is a key issue for wireless sensor networks (WSNs). The triangulation method and the maximum likelihood (ML) estimator are usually adopted for angle of arrival (AOA) based node localization in WSNs. However, the localization accuracy of the triangulation is low, and the ML estimator requires a good initialization close to the true location to avoid the divergence problem. In this paper, we develop two efficient closed-form AOA based localization algorithms derived from effective auxiliary variables based method. First, we formulate the node localization problem as a linear least squares problem using auxiliary variables. Based on its closed-form solution, a new auxiliary variables based pseudo-linear estimator (AVPLE) is developed. Then, we further propose an auxiliary variables based total least square (AVTLS) estimator to improve the localization accuracy. In addition, we investigate the impact of the orientation of the unknown node on estimation performance of the new algorithms. Simulation results demonstrate that the new algorithms achieve much higher localization accuracy than the triangulation method and also avoid local minima and divergence problem in ML estimator. Moreover, the AVTLS estimator has higher localization accuracy than the AVPLE, and its localization accuracy remains robust when the orientation angle of the unknown node varies from 0 to 180 degrees.
Keywords :
least squares approximations; maximum likelihood estimation; sensor placement; wireless sensor networks; AOA based node localization; AVPLE; AVTLS estimator; ML estimator; WSN; angle of arrival; auxiliary variable based pseudolinear estimator; auxiliary variable based total least square estimator; auxiliary variables based method; closed-form AOA based localization algorithms; closed-form auxiliary variable based algorithms; closed-form solution; divergence problem; linear least squares problem; local minima problem; localization accuracy; maximum likelihood estimator; node localization problem; sensor node localization; triangulation method; wireless sensor networks; Accuracy; Maximum likelihood estimation; Noise; Signal processing algorithms; Wireless sensor networks; Angle of arrival; auxiliary variables based pseudo-linear estimator; auxiliary variables based total least square; closed-form solution; node localization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2014 IEEE International Conference on
Conference_Location :
Florence
Type :
conf
DOI :
10.1109/ICASSP.2014.6853830
Filename :
6853830
Link To Document :
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