DocumentCode :
1337717
Title :
Generalised array manifold model for wireless communication channels with local scattering
Author :
Asztély, D. ; Ottersten, B. ; Swindlehurst, A.L.
Author_Institution :
Dept. of Signals, Sensors & Syst., R. Inst. of Technol., Stockholm, Sweden
Volume :
145
Issue :
1
fYear :
1998
fDate :
2/1/1998 12:00:00 AM
Firstpage :
51
Lastpage :
57
Abstract :
The authors propose the use of a generalised array manifold for parameterised spatial signature estimation in wireless communication channels with local scattering. The array manifold commonly used for point sources is generalised to include linear combinations of the nominal array response vectors and their derivatives. The motivation behind this idea is to obtain better estimates of the spatial signatures for direction of arrival (DOA) based signal waveform estimation. The estimators proposed exploit the orthogonality between the so-called noise and signal subspaces, leading to a separable solution for the derivative coefficients. As a result, a search is required for the DOAs only. For uniform linear arrays, the spatial signatures are shown to be approximately Vandermonde vectors with damped modes, and a closed-form estimator such as ESPRIT may be used in this case. Simulation examples are included to compare the signal estimation performance obtained using the proposed generalised manifold and the conventional array manifold
Keywords :
array signal processing; cellular radio; direction-of-arrival estimation; electromagnetic wave scattering; land mobile radio; linear antenna arrays; multipath channels; noise; radio links; radiowave propagation; DOA based signal waveform estimation; ESPRIT; Vandermonde vectors; array response vectors; cellular radio; closed-form estimator; damped modes; direction of arrival; generalised array manifold model; local scattering; multipath propagation; noise subspace; parameterised spatial signature estimation; point sources; signal subspace; simulation; spatial signatures; uniform linear arrays; uplink signal separation; wireless communication channels;
fLanguage :
English
Journal_Title :
Radar, Sonar and Navigation, IEE Proceedings -
Publisher :
iet
ISSN :
1350-2395
Type :
jour
DOI :
10.1049/ip-rsn:19981768
Filename :
660211
Link To Document :
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