Title :
Turbo equalisation of time varying multipath channel under class-A impulsive noise
Author :
El-Mahdy, A.E. ; Namazi, N.M.
Author_Institution :
Electr. Eng. Dept., Mil. Tech. Coll., Cairo, Egypt
fDate :
6/2/2006 12:00:00 AM
Abstract :
The paper explores the problem of turbo equalisation and channel estimation under class-A impulsive noise. The channel is a frequency selective fading channel in which its time varying coefficients are expanded into a finite number of basis sequences and time invariant (TI) expansion parameters. Instead of the application of a maximum likelihood (ML) approach in its standard form, the proposed channel estimator is performed by an iterative approach based on the expectation maximisation (EM) algorithm and the steepest descent algorithm. The proposed estimator reduces the complexity of computations resulting from direct application of the ML approach and provides significant performance gain over the algorithms which are efficient in white Gaussian noise. Also, the proposed estimator is suitable for class-A impulsive noise and utilises the soft information obtained from the soft output Viterbi algorithm (SOVA) which is derived under class-A impulsive noise.
Keywords :
Gaussian noise; T invariance; Viterbi decoding; channel estimation; computational complexity; equalisers; expectation-maximisation algorithm; fading channels; impulse noise; iterative decoding; maximum likelihood decoding; maximum likelihood sequence estimation; multipath channels; time-varying channels; turbo codes; white noise; EM algorithm; ML approach; SOVA; basis sequence; channel estimation; class-A impulsive noise; computation complexity; expectation maximisation; frequency selective fading channel; iterative approach; maximum likelihood approach; soft output Viterbi algorithm; steepest descent algorithm; time invariant expansion parameter; time varying multipath channel; turbo equalisation; white Gaussian noise;
Journal_Title :
Communications, IEE Proceedings-
DOI :
10.1049/ip-com:20045292