Title :
On the inclusion of channel´s time dependence in a hidden Markov model for blind channel estimation
Author :
Antón-Haro, Carles ; Fonollosa, José A R ; Faulí, Claudi ; Fonollosa, Javier R.
Author_Institution :
Dept. of Signal Theory & Commun., Univ. Politecnica de Catalunya, Barcelona, Spain
fDate :
5/1/2001 12:00:00 AM
Abstract :
The theory of hidden Markov models (HMM) is applied to the problem of blind (without training sequences) channel estimation and data detection. Within a HMM framework, the Baum-Welch (1970) identification algorithm is frequently used to find out maximum-likelihood (ML) estimates of the corresponding model. However, such a procedure assumes the model (i.e., the channel response) to be static throughout the observation sequence. By means of introducing a parametric model for time-varying channel responses, a version of the algorithm, which is more appropriate for mobile channels [time-dependent Baum-Welch (TDBW)] is derived. Aiming to compare algorithm behavior, a set of computer simulations for a GSM scenario is provided. Results indicate that, in comparison to other Baum-Welch (BW) versions of the algorithm, the TDBW approach attains a remarkable enhancement in performance. For that purpose, only a moderate increase in computational complexity is needed
Keywords :
cellular radio; computational complexity; fading channels; hidden Markov models; maximum likelihood estimation; parameter estimation; signal detection; Baum-Welch identification algorithm; GMSK; GSM; HMM; MLE; blind channel estimation; blind data detection; channel time dependence; computational complexity; computer simulations; equalisers; fading; hidden Markov models; maximum-likelihood estimates; mobile channels; observation sequence; parametric model; time-dependent Baum-Welch algorithm; time-varying channel response; Blind equalizers; Channel estimation; GSM; Hidden Markov models; Iterative algorithms; Maximum likelihood detection; Maximum likelihood estimation; Parametric statistics; Signal processing algorithms; Time-varying channels;
Journal_Title :
Vehicular Technology, IEEE Transactions on