Title :
Wireless sensor networks based multidimensional scaling position method
Author :
Shuang Qin ; Wei Huang
Author_Institution :
Sch. of Phys. & Electron. Eng., Sichuan Normal Univ., Chengdu, China
Abstract :
Mobile station (MS) localization which plays an important role in the Wireless Sensor Networks (WSNs) has received considerable attention. In this paper, a new framework based on subspace approach for positioning a MS at WSNs localization system with the use of time-of-arrival (TOA) measurements is introduced. Unlike ordinary multidimensional scaling (MDS) algorithm using eigendcomposition or inverse computation to estimate the MS position, a computationally simple weighting estimator is proposed by introducing lagrange multiplier and Mean square error (MSE) weighting matrix. Computer simulations are included to corroborate the theoretical development and to contrast the estimator performance with several conventional algorithms. It is shown that the new method with low computational complexity achieves a comparable localization performance for zero-mean white Gaussian range error at moderate noise level.
Keywords :
Gaussian processes; matrix algebra; mobile communication; time-of-arrival estimation; wireless sensor networks; MDS algorithm; MS localization; MSE weighting matrix; TOA measurements; WSN; WSNs localization system; inverse computation; mean square error; mobile station; multidimensional scaling; multidimensional scaling position method; subspace approach; time-of-arrival measurements; weighting estimator; wireless sensor networks; zero-mean white Gaussian range error; Matrix decomposition; Mobile communication; Position measurement; Signal processing algorithms; Signal to noise ratio; Wireless sensor networks; Mobile localization; lagrange multiplier; mean square error(MSE); multidimensional scaling; time-of-arrival (TOA); weighted matrix;
Conference_Titel :
Software Engineering and Service Science (ICSESS), 2014 5th IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-3278-8
DOI :
10.1109/ICSESS.2014.6933742