DocumentCode
2165034
Title
A robust subspace tracking algorithm for subspace-based blind multiuser detection in impulsive noise
Author
Wen, Y. ; Chan, S.C. ; Ho, K.L.
Author_Institution
Dept. of Electr. & Electron. Eng., Hong Kong Univ., China
Volume
2
fYear
2002
fDate
2002
Firstpage
1289
Abstract
Subspace tracking is an efficient method to reduce the complexity in estimating the signal subspace required in subspace-based multiuser detection algorithm. Recursive least square (RLS)-based subspace tracking algorithms such as the PAST algorithm can be used to estimate the signal subspace adaptively with relatively low computational complexity. However, it is shown in this paper that subspace estimation using conventional autocorrelation matrix is very sensitive to impulse noise. A new robust correlation matrix, based on robust statistics, is proposed to overcome this problem. Moreover, a new robust PAST algorithm is developed, again using robust statistics, for robust subspace tracking. A new restoring mechanism is also proposed to handle long bursts of impulses, which sporadically occur in communications systems. Simulation results show that the proposed robust subspace tracking-based blind multiuser detector performs better than the conventional approach, especially under consecutive impulses. The adaptation of the proposed scheme in a dynamic multiple access channel, where users may enter and exit the shared mobile channel, is also found to be satisfactory.
Keywords
adaptive estimation; correlation methods; impulse noise; matrix algebra; mobile radio; multi-access systems; multiuser detection; statistical analysis; tracking; adaptive estimation; blind multiuser detection; blind multiuser detector; dynamic multiple access channel; impulse burst; impulsive noise; restoring mechanism; robust PAST algorithm; robust correlation matrix; robust statistics; robust subspace tracking algorithm; shared mobile channel; subspace estimation; Autocorrelation; Detectors; Least squares approximation; Multiuser detection; Noise robustness; Parameter estimation; Performance gain; Radio access networks; Recursive estimation; Statistics;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Signal Processing, 2002. DSP 2002. 2002 14th International Conference on
Print_ISBN
0-7803-7503-3
Type
conf
DOI
10.1109/ICDSP.2002.1028329
Filename
1028329
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