DocumentCode :
82849
Title :
Improved multi-stage clustering-based blind equalisation in interference-limited CDMA environments
Author :
Mitra, Rajendu ; Bhatia, Vandana
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Indore, Indore, India
Volume :
50
Issue :
14
fYear :
2014
fDate :
July 3 2014
Firstpage :
1027
Lastpage :
1029
Abstract :
The improved multi-stage clustering (IMSC)-based blind equalisation algorithm proposed by Mitra and colleagues in 2011 gave rise to significant improvements in terms of performance metrics as compared with its state-of-the-art counterparts. However, the present authors´ research studies show that IMSC performance degrades significantly for multiple access interference (MAI) in code-division multiplexing access (CDMA) systems. To mitigate MAI, code filtering by orthogonal Hadamard codes is a popular practice to minimise the interference. Code-filtering techniques have been used in the past in which a de-correlating transform (inverse of an orthonormal Hadamard matrix) has been incorporated into the cost function of the parent algorithm (which can be any traditional equalisation algorithm). A hybrid equalisation scheme is suggested which combines IMSC and code-filtering, so as to mitigate interference in CDMA environments. The code-filtered IMSC shows better performance than any of the previously proposed algorithms.
Keywords :
Hadamard codes; blind equalisers; code division multiple access; decorrelation; filtering theory; interference suppression; orthogonal codes; pattern clustering; radiofrequency interference; transforms; IMSC; MAI; code-division multiplexing access system; code-filtering technique; decorrelating transform; improved multistage clustering-based blind equalisation algorithm; interference minimisation; interference-limited CDMA environmen; inverse transform; multiple access interference; orthogonal Hadamard code;
fLanguage :
English
Journal_Title :
Electronics Letters
Publisher :
iet
ISSN :
0013-5194
Type :
jour
DOI :
10.1049/el.2014.1281
Filename :
6849595
Link To Document :
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