DocumentCode :
1831675
Title :
High-Precision RSSI-based Indoor Localization Using a Transmission Power Adjustment Strategy for Wireless Sensor Networks
Author :
Wang, Jiing-Yi ; Chen, Chia-Pang ; Lin, Tzu-Shiang ; Chuang, Cheng-Long ; Lai, Tzu-Yun ; Jiang, Joe-Air
Author_Institution :
Intel-NTU Connected Context Comput. Center, Nat. Taiwan Univ., Taipei, Taiwan
fYear :
2012
fDate :
25-27 June 2012
Firstpage :
1634
Lastpage :
1638
Abstract :
Indoor localization is an important issue in wireless sensor network (WSN) studies. Sensed data may become meaningless, if the locations of sensors are not known. Traditional localization techniques do not meet the requirements of low-cost and energy-conservation while performing localization tasks. Recently, the received signal strength indicator (RSSI)-based range measurement technology is widely used in sensor networks due to its easy implementation. In typical indoor environments, RSSI is affected by dense multipath fading effects because people are moving around, or because furniture and equipment block transmission signals. Therefore, the overall accuracy of RSSI-based localization schemes remains low. In this paper, a new localization scheme which is based on a transmission power adjustment strategy is proposed. Firstly, power decay curves are created in a real indoor environment to accurately estimate the distances between an unknown node and anchor nodes. Secondly, the unknown node selects three nearest anchor nodes by using the minimum transmission power to limit the estimated location to a triangle area. And then, the centroid of the triangle is calculated and serves as the initial estimated point. Finally, based on the estimated distances of corresponding power curves determined by RSSI scores using different transmission power levels, the final estimated location falls in one of the three equally divided areas of the triangle. The experimental results demonstrate that the proposed method can provide a low-cost solution for indoor localization with high precision.
Keywords :
fading; indoor radio; radiofrequency power transmission; sensor placement; wireless sensor networks; RSSI scores; RSSI-based range measurement technology; anchor nodes; energy conservation; equipment block transmission signals; high-precision RSSI-based indoor localization; indoor environments; multipath fading effects; power decay curves; real indoor environment; received signal strength indicator-based range measurement technology; sensors locations; transmission power adjustment strategy; transmission power levels; wireless sensor networks; Accuracy; Ad hoc networks; Estimation; Indoor environments; Receivers; Sensors; Wireless sensor networks; RSSI; WSN; indoor localization; transmission power;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing and Communication & 2012 IEEE 9th International Conference on Embedded Software and Systems (HPCC-ICESS), 2012 IEEE 14th International Conference on
Conference_Location :
Liverpool
Print_ISBN :
978-1-4673-2164-8
Type :
conf
DOI :
10.1109/HPCC.2012.239
Filename :
6332374
Link To Document :
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