Title :
Velocity-based CRLB predictions for enhanced cooperative links selection in location-enabled mobile heterogeneous networks
Author :
Zirari, S. ; Denis, Benoit
Author_Institution :
Leti, CEA, Grenoble, France
Abstract :
In this paper we consider adapting links selection criteria to assist the localization of Mobile Terminals in heterogeneous and cooperative wireless networks. Integrating asynchronously the velocity and location estimates of neighboring terminals in a performance indicator based on a Cramer Rao Lower Bound, one can reliably anticipate on the instantaneous location estimation errors that would be committed along mobile trajectories, while experiencing limited connectivity. This new dynamic indicator is thus helpful to predict in a reasonably short-term the most relevant combination of range measurements, for instance based on Received Signal Strength Indicators, with respect to other neighboring mobile terminals over peer-to-peer links. The idea is to limit in turn power consumption, computational complexity and latency, for instance by postponing as much as possible a complete refreshment of the serving neighbors. Coupling further this selection scheme with a decentralized and cooperative Extended Kalman Filter, simulation results are provided in a realistic dynamic heterogeneous indoor context, including fixed WiFi Access Points and multi-standard WiFi/Zigbee mobile terminals under pedestrian mobility.
Keywords :
Kalman filters; Zigbee; computational complexity; cooperative communication; mobile communication; radio access networks; telecommunication links; wireless LAN; Cramer Rao lower bound; Zigbee mobile terminals; computational complexity; cooperative extended Kalman filter; cooperative wireless networks; dynamic indicator; enhanced cooperative links selection; fixed WiFi access points; instantaneous location estimation errors; location-enabled mobile heterogeneous networks; mobile terminals; mobile trajectories; pedestrian mobility; peer-to-peer links; power consumption; realistic dynamic heterogeneous indoor context; received signal strength indicators; velocity-based CRLB predictions; Acceleration; Accuracy; IEEE 802.11 Standards; Mobile communication; Mobile computing; Wireless sensor networks; Cooperative Networks; Cramer Rao Lower Bounds; Distributed Tracking Filter; Heterogeneous Networks; Indoor Environments; Links Selection; Mobility; Multiple Radio Access Technologies;
Conference_Titel :
Positioning Navigation and Communication (WPNC), 2013 10th Workshop on
Conference_Location :
Dresden
Print_ISBN :
978-1-4673-6031-9
DOI :
10.1109/WPNC.2013.6533258