Positioning Scheme Based on Iterative Path-Loss Exponent Estimation in WSNs 


Vol. 37,  No. 10, pp. 889-900, Oct.  2012


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  Abstract

In wireless sensor networks, the positioning scheme using received signal strength (RSS) has been widely considered. Appropriate estimation of path-loss exponent (PLE) between a sensor node and an anchor node plays a key role in reducing position error in this RSS-based positioning scheme. In the conventional researches, a sensor node directly uses the PLEs measured by its nearest anchor node to calculate its position. However, the actual PLE between a sensor node and the anchor node can be different from the PLE measured by its nearest anchor node. Thus, if a sensor node directly uses the PLEs measured by its nearest anchor node, the estimated position is different from the actual position of the sensor node with a high probability. In this paper, we describe the method how a sensor node estimates PLEs from the anchor nodes of interest by itself and calculates its position based on these self-estimated PLEs. Especially, our proposal suggests the mechanism to iteratively calculate the PLEs depending on the estimated distances between a sensor node and anchor nodes. Based on the recalculated PLEs, the sensor node reproduces its position. Through simulations, we show that our proposed positioning scheme outperforms the traditional scheme in terms of position error.

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  Cite this article

[IEEE Style]

J. Choi, J. Choi, S. Yoo, "Positioning Scheme Based on Iterative Path-Loss Exponent Estimation in WSNs," The Journal of Korean Institute of Communications and Information Sciences, vol. 37, no. 10, pp. 889-900, 2012. DOI: .

[ACM Style]

Jun-Ho Choi, Jae-Kark Choi, and Sang-Jo Yoo. 2012. Positioning Scheme Based on Iterative Path-Loss Exponent Estimation in WSNs. The Journal of Korean Institute of Communications and Information Sciences, 37, 10, (2012), 889-900. DOI: .

[KICS Style]

Jun-Ho Choi, Jae-Kark Choi, Sang-Jo Yoo, "Positioning Scheme Based on Iterative Path-Loss Exponent Estimation in WSNs," The Journal of Korean Institute of Communications and Information Sciences, vol. 37, no. 10, pp. 889-900, 10. 2012.