Title :
Two-step hybrid self-localization using unsynchronized low-complexity anchors
Author :
Yue Wang ; Wiemeler, Michael ; Feng Zheng ; Weiming Xiong ; Kaiser, Thomas
Author_Institution :
Inst. of Digital Signal Process., Univ. of Duisburg-Essen, Duisburg, Germany
Abstract :
Self-localization using unsynchronized low-complexity anchors has a number of attractive features. Traditional self-localization techniques are not suitable to this scenario or have their applicability limitations. In this paper, a two-step hybrid self-localization technique using unsynchronized low-complexity anchors is proposed, which can achieve two-dimensional (2-D) instantaneous localization for both mobile and fixed agents and eliminate the need for heading information of the agents. In the first step, an initial location estimate is obtained utilizing range information based on received-signal-strength (RSS) measurements. In the second step, differential angle-of-arrival (AOA) measurements are converted to range measurements with the aid of the first step location estimate. Finally, a two-step hybrid localization algorithm is obtained using all the measurements in the first step and the second step. Simulation results show that the two-step hybrid self-localization technique has relatively high accuracy even in the scenarios with large RSS-based ranging variances and medium AOA measurement variances.
Keywords :
direction-of-arrival estimation; mobile radio; ultra wideband communication; 2-D instantaneous localization; RSS measurements; RSS-based ranging variances; differential angle-of-arrival measurements; heading information; medium AOA measurement variances; mobile agents; received-signal-strength measurements; two-dimensional instantaneous localization; two-step hybrid self-localization technique; unsynchronized low-complexity anchors; Accuracy; Antenna arrays; Antenna measurements; Distance measurement; Measurement uncertainty; Simulation; Wireless sensor networks; 60 GHz; angle-of-arrival (AOA); hybrid; received-signal-strength (RSS); self-localization; ultra-wideband (UWB); unsynchronized low-complexity anchors;
Conference_Titel :
Localization and GNSS (ICL-GNSS), 2013 International Conference on
Conference_Location :
Turin
Print_ISBN :
978-1-4799-0484-6
DOI :
10.1109/ICL-GNSS.2013.6577271