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
来源
Annals of Telecommunications | 2016年 / 71卷
关键词
WSN; Localization; Grid-based localization; Wireless sensor networks;
D O I
暂无
中图分类号
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.
引用
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页码:239 / 249
页数:10
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