DocumentCode :
1762214
Title :
Convex Combination of Adaptive Filters under the Maximum Correntropy Criterion in Impulsive Interference
Author :
Liming Shi ; Yun Lin
Author_Institution :
Chongqing Key Lab. of Mobile Commun. Technol., Chongqing Univ. of Posts & Telecommun. (CQUPT), Chongqing, China
Volume :
21
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
1385
Lastpage :
1388
Abstract :
A robust adaptive filtering algorithm based on the convex combination of two adaptive filters under the maximum correntropy criterion (MCC) is proposed. Compared with conventional minimum mean square error (MSE) criterion-based adaptive filtering algorithm, the MCC-based algorithm shows a better robustness against impulsive interference. However, its major drawback is the conflicting requirements between convergence speed and steady-state mean square error. In this letter, we use the convex combination method to overcome the tradeoff problem. Instead of minimizing the squared error to update the mixing parameter in conventional convex combination scheme, the method of maximizing the correntropy is introduced to make the proposed algorithm more robust against impulsive interference. Additionally, we report a novel weight transfer method to further improve the tracking performance. The good performance in terms of convergence rate and steady-state mean square error is demonstrated in plant identification scenarios that include impulsive interference and abrupt changes.
Keywords :
adaptive filters; filtering theory; interference (signal); least mean squares methods; MCC; adaptive filters convex combination; convergence speed; convex combination method; impulsive interference; maximum correntropy criterion; minimum mean square error criterion-based adaptive filtering algorithm; steady-state mean square error; weight transfer method; Adaptive algorithms; Convergence; Interference; Mean square error methods; Robustness; Signal processing algorithms; Steady-state; Adaptive filtering; convex combination; impulsive interference; maximum correntropy criterion; weight transfer;
fLanguage :
English
Journal_Title :
Signal Processing Letters, IEEE
Publisher :
ieee
ISSN :
1070-9908
Type :
jour
DOI :
10.1109/LSP.2014.2337899
Filename :
6857382
Link To Document :
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