Title :
Hybrid cooperative positioning with reference stations and distance dependent range corrections
Author :
Chen Xi ; Gao Wenyun ; Lu Jianhua
Author_Institution :
Space Center, Tsinghua Univ., Beijing, China
Abstract :
Hybrid cooperative positioning fuses pseudoranges and ranging among peer nodes to figure out node positions. However, multipath, undetected direct path and various propagation delays often result in positive biased ranging and pseudorange measurements, which are the limiting factor in improving position precision. In this work, we propose a message passing algorithm for hybrid cooperative positioning, named hybrid sum-product algorithm over a wireless network with reference stations (HSPAWN-R). The proposed algorithm not only models and corrects the bias of ranging and pseudorange, but also explores ranging with references stations that have “known” positions in the message passing iteration. Extensive simulations are conducted, the results shows that the proposed HSPAWN-R significantly outperforms existing algorithms such as HSPAWN.
Keywords :
cooperative communication; multipath channels; radionavigation; radiowave propagation; HSPAWN-R; distance dependent range correction; hybrid cooperative positioning; hybrid sum-product algorithm; message passing algorithm; multipath propagation; positive biased ranging measurement; propagation delay; pseudorange measurement; reference station; undetected direct path; Distance measurement; Global Navigation Satellite Systems; Peer to peer computing; Receivers; Satellite broadcasting; Satellites; Wireless communication; Belief Propagation; HSPAWN; HSPAWN-R; Hybrid Cooperative Positioning;
Conference_Titel :
Wireless Information Technology and Systems (ICWITS), 2012 IEEE International Conference on
Conference_Location :
Maui, HI
Print_ISBN :
978-1-4673-0947-9
DOI :
10.1109/ICWITS.2012.6417705