DocumentCode :
1368745
Title :
2-D spatial smoothing for multipath coherent signal separation
Author :
Wang, Hongyi ; Liu, K. J Ray
Author_Institution :
Lucent Technol., Whippany, NJ, USA
Volume :
34
Issue :
2
fYear :
1998
fDate :
4/1/1998 12:00:00 AM
Firstpage :
391
Lastpage :
405
Abstract :
The use of two-dimensional spatial smoothing (SS) to increase channel capacity of wireless communications system is discussed, The necessary and sufficient conditions on array configuration for applying SS to multiple signal classification (MUSIC), and adaptive beamforming algorithms are defined and proved, This array must have an orientational invariance structure with an ambiguity free center array, and the number of subarrays must be larger than or equal to the size of the largest group of coherent signals. We also studied the cause of ambiguities in a multipath environment. We found the necessary and sufficient conditions for a three-sensor array manifold to be ambiguity free and identified several higher order ambiguity situations, If an array is also central symmetric, the forward/backward SS (FBSS) can be used to improve the resolution. Finally, we extended our results to the estimation of signal parameters via rotational invariance techniques (ESPRIT). All the predicted results are verified by simulations
Keywords :
channel capacity; covariance matrices; direction-of-arrival estimation; fading; mobile radio; multipath channels; radio direction-finding; smoothing methods; 2-D spatial smoothing; DOA estimation; MUSIC algorithm; adaptive beamforming algorithms; ambiguity free center array; array configuration; channel capacity; covariance matrix; decorrelation; eigen-decomposition; forward/backward spatial smoothing; multipath coherent signal separation; multiple signal classification; orientational invariance structure; rotational invariance techniques; three-sensor array manifold; wireless communications system; Adaptive arrays; Array signal processing; Channel capacity; Multiple signal classification; Parameter estimation; Signal resolution; Smoothing methods; Source separation; Sufficient conditions; Wireless communication;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/7.670322
Filename :
670322
Link To Document :
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