DocumentCode :
3603454
Title :
An Enhanced Device Localization Approach Using Mutual Signal Strength in Cellular Networks
Author :
Shih-Hau Fang ; Ying-Tso Hsu ; Yao Shiao ; Fan-Yu Sung
Author_Institution :
Dept. of Electr. Eng. & Innovation Center for Big Data & Digital Convergence, Yuan Ze Univ., Zhongli, Taiwan
Volume :
2
Issue :
6
fYear :
2015
Firstpage :
596
Lastpage :
603
Abstract :
This study proposes an accurate and calibration-free mobile device localization algorithm in cellular networks. By exploiting the mutual received signal strength (RSS) between base stations, the proposed algorithm creates an accurate RSS-distance mapping using multivariable regression approaches. Unlike traditional methods, the generated mapping is not fixed but rather dynamic to reflect current environments, thus, better characterizing the RSS-distance relationship in the target area and achieving more accurate location estimations without additional calibration effort. Furthermore, this study adopts singular value decomposition to enhance the robustness of our system. Experiments were conducted in a realistic GSM network. Results demonstrated that our approach apparently improves the positioning accuracy, as compared to three existing cellular-based methods, Cell-ID, enhanced Cell-ID, and propagation-model approaches.
Keywords :
RSSI; cellular radio; mobility management (mobile radio); calibration-free mobile device localization algorithm; cellular networks; enhanced device localization approach; generated mapping; multivariable regression; mutual received signal strength; singular value decomposition; Estimation; GSM; Mobile communication; Mobile handsets; Noise; Noise measurement; Robustness; Calibration-free system; Mobile positioning; calibration-free system; cellular networks; distance estimation; mobile positioning; received signal strength; received signal strength (RSS);
fLanguage :
English
Journal_Title :
Internet of Things Journal, IEEE
Publisher :
ieee
ISSN :
2327-4662
Type :
jour
DOI :
10.1109/JIOT.2015.2451997
Filename :
7145381
Link To Document :
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