DocumentCode :
319386
Title :
Adaptive minimum dispersion interference suppression for DS/CDMA systems in non-Gaussian impulsive channels
Author :
Lee, Seoyoung ; Dickerson, Julie
Author_Institution :
Dept. of Electr. Eng. & Comput. Eng., Iowa State Univ., Ames, IA, USA
Volume :
2
fYear :
1997
fDate :
2-5 Nov 1997
Firstpage :
857
Abstract :
Minimum mean squared error (MMSE) receivers can suppress interference in DS/CDMA systems. The MMSE receivers are near-far resistant in the presence of additive Gaussian noise. But the noise in many communication channels is non-Gaussian and impulsive. Symmetric alpha-stable (SaS) probability density functions can accurately model large classes of impulsive noise. For a SaS process with 0<α<2, the MMSE performance criterion cannot be used since the noise process has infinite variance. This paper considers the problem of adaptive multiple-access interference (MAI) suppression in SaS non-Gaussian impulsive noise channels to combat the near-far problem. The receiver uses the minimum dispersion (MD) criterion to suppress interference. The receiver is implemented adaptively using least mean p-norm (LMP) algorithm. We investigate the performance of the MD receiver. The simulation results indicate that the proposed receiver is less sensitive to the near-far problem. The adaptive MD receiver shows good near-far resistance in non-Gaussian impulsive noise channels modeled as SaS processes
Keywords :
adaptive signal detection; code division multiple access; interference suppression; least mean squares methods; phase shift keying; probability; radio receivers; random noise; telecommunication channels; BPSK system; DS/CDMA systems; MAI suppression; MMSE receivers; adaptive multiple-access interference suppression; communication channels; impulsive noise; interference suppression; least mean p-norm algorithm; minimum dispersion criterion; minimum mean squared error receivers; near-far resistance; non-Gaussian impulsive channels; non-Gaussian noise; simulation results; symmetric alpha-stable probability density functions; Additive noise; Computer errors; Delay; Electromagnetic interference; Gaussian noise; Interference suppression; Multiaccess communication; Power system modeling; Probability density function; Working environment noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
MILCOM 97 Proceedings
Conference_Location :
Monterey, CA
Print_ISBN :
0-7803-4249-6
Type :
conf
DOI :
10.1109/MILCOM.1997.646741
Filename :
646741
Link To Document :
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