Quantized lower bounds on grid-based localization algorithm for wireless sensor networks

被引:0
|
作者
Aws Al-Qaisi
A. I. Alhasanat
Abdelwadood Mesleh
B. S. Sharif
C. C. Tsimenidis
J. A. Neasham
机构
[1] Al-balqa’ Applied University,Communication Engineering Department
[2] Al-Hussien Bin Talal University,Department of Computer Engineering
[3] Al-Balqa’ Applied University,Computer Engineering Department
[4] University of Newcastle Upon Tyne,School of Electrical and Electronic Engineering
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关键词
WSN; Localization; Grid-based localization; Wireless sensor networks;
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学科分类号
摘要
In this paper, we introduce a Quantized Cramer Rao Bound (Q-CRB) method, which adapts the use of the CRB to handle grid-based localization algorithms with certain constraints, such as localization boundaries. In addition, we derive a threshold granularity level which identifies where the CRB can be appropriately applied to this type of algorithm. Moreover, the derived threshold value allows the users of grid-based LSE techniques to probably avoid some unnecessary complexities associated with using high grid resolutions. To examine the feasibility of the new proposed bound, the grid-based least square estimation (LSE) technique was implemented. The Q-CRB was used to evaluate the performance of the LSE method under extensive simulation scenarios. The results show that the Q-CRB provided a tight bound in the sense that the Q-CRB can characterize the behaviour of location errors of the LSE technique at various system parameters, e.g. granularity levels, measurement accuracies, and in the presence or absence of localization boundaries.
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页码:239 / 249
页数:10
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