Title :
Reduced complexity signature based mobile terminal location relying on the knowledge of directional channel impulse responses
Author :
Jotten, C.A. ; Baier, P.W. ; Meurer, M. ; Heilmann, S. ; Weber, T. ; Maurer, J.
Author_Institution :
Res. Group for RF Commun., Kaiserslautern Univ., Germany
Abstract :
In mobile radio scenarios with multipath propagation the impulse responses of the channels between a mobile terminal (MT) and the base stations (BS) are in general unique signatures of the position of the MT. This fact can be exploited for MT location by first determining the channel impulse responses (CIR) off-line for sufficiently densely spaced reference points and storing these data in a data base, and then matching on-line measured CIRs to the data base entries. Unfortunately, this rationale would require a prohibitively large data base, because the CIRs may be totally different even for MT positions separated from each other by less than one wavelength λ. In the paper a CIR-based location scheme is proposed which can do with a data base of substantially reduced size. This reduction resorts to the observation that the CIRs are made up by individual wave fronts which remain unaltered over geographical areas with dimensions much larger than λ.
Keywords :
database management systems; land mobile radio; mobility management (mobile radio); multipath channels; parameter estimation; radio direction-finding; radio tracking; radionavigation; telecommunication computing; transient response; CIR-based location scheme; MT position separation; data base size; densely spaced reference points; directional channel impulse responses knowledge; geographical areas; individual wave fronts; mobile base stations; mobile radio scenarios; mobile terminal; multipath propagation; on-line measured CIR; reduced complexity signature based mobile terminal location; unique MT position signatures; Attenuation measurement; Base stations; Delay; Land mobile radio; Microwave communication; Microwave measurements; Mobile communication; Position measurement; Radio frequency; Wavelength measurement;
Conference_Titel :
Vehicular Technology Conference, 2004. VTC2004-Fall. 2004 IEEE 60th
Print_ISBN :
0-7803-8521-7
DOI :
10.1109/VETECF.2004.1404725