Title :
Adaptive super-exponential methods for blind multichannel equalization
Author :
Weber, Rolf ; Böhme, Johann F.
Author_Institution :
Dept. of Electr. Eng., Ruhr-Univ., Bochum, Germany
Abstract :
An adaptive super-exponential algorithm for multichannel fractionally-spaced blind equalization is proposed. In the noise-free case, oversampling the received signal in space or time leads to a rank-deficient covariance matrix of the corresponding vector process. This seems to be the major obstacle towards a multichannel adaptive super-exponential algorithm. In the absence of additive noise, the optimal multichannel equalizer setting can also be found as the solution of a suitably chosen quadratic cost function. In the presence of a moderate amount of noise, minimization of the same cost function should result in an equalizer setting close to the optimal one. The optimization, however, can now be performed recursively using a stabilized RLS algorithm. Experimental results with underwater acoustic communication data demonstrate the good performance of the suggested method.
Keywords :
adaptive equalisers; blind equalisers; least squares approximations; noise; optimisation; signal sampling; underwater acoustic communication; adaptive super-exponential methods; additive noise; cost function minimization; multichannel adaptive super-exponential algorithm; multichannel fractionally-spaced blind equalization; optimal multichannel equalizer; quadratic cost function; rank-deficient covariance matrix; received signal oversampling; sea trial; stabilized RLS algorithm; underwater acoustic communication data; vector process; Acoustic noise; Adaptive equalizers; Additive noise; Blind equalizers; Cost function; Covariance matrix; Resonance light scattering; Signal processing; Underwater acoustics; Underwater communication;
Conference_Titel :
Sensor Array and Multichannel Signal Processing Workshop Proceedings, 2002
Print_ISBN :
0-7803-7551-3
DOI :
10.1109/SAM.2002.1191108