Convergence analysis of finite length blind adaptive equalizers
- 1 September 1995
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Signal Processing
- Vol. 43 (9) , 2120-2129
- https://doi.org/10.1109/78.414774
Abstract
The paper presents some new analytical results on the convergence of two finite length blind adaptive channel equalizers, namely, the Godard equalizer and the Shalvi-Weinstein equalizer. First, a one-to-one correspondence in local minima is shown to exist between the Godard and Shalvi-Weinstein equalizers, hence establishing the equivalent relationship between the two algorithms. Convergence behaviors of finite length Godard and Shalvi-Weinstein equalizers are analyzed, and the potential stable equilibrium points are identified. The existence of undesirable stable equilibria for the finite length Shalvi-Weinstein equalizer is demonstrated through a simple example. It is proven that the points of convergence for both finite length equalizers depend on an initial kurtosis condition. It is also proven that when the length of equalizer is long enough and the initial equalizer setting satisfies the kurtosis condition, the equalizer will converge to a stable equilibrium near a desired global minimum. When the kurtosis condition is not satisfied, generally the equalizer will take longer to converge to a desired equilibrium given sufficiently many parameters and adequate initialization. The convergence analysis of the equalizers in PAM communication systems can be easily extended to the equalizers in QAM communication systemsKeywords
This publication has 19 references indexed in Scilit:
- A new approach to blind identification and equalization of multipath channelsPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2002
- Blind channel identification based on second order cyclostationary statisticsPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1993
- Blind equalization without gain identificationIEEE Transactions on Information Theory, 1993
- On the (non)existence of undesirable equilibria of Godard blind equalizersIEEE Transactions on Signal Processing, 1992
- New criteria for blind deconvolution of nonminimum phase systems (channels)IEEE Transactions on Information Theory, 1990
- Stationary points of the constant modulus algorithm for real Gaussian signalsIEEE Transactions on Acoustics, Speech, and Signal Processing, 1990
- ARMA bispectrum approach to nonminimum phase system identificationIEEE Transactions on Acoustics, Speech, and Signal Processing, 1988
- Identification of linear stochastic systems via second- and fourth-order cumulant matchingIEEE Transactions on Information Theory, 1987
- A new approach to multipath correction of constant modulus signalsIEEE Transactions on Acoustics, Speech, and Signal Processing, 1983
- A Method of Self-Recovering Equalization for Multilevel Amplitude-Modulation SystemsIEEE Transactions on Communications, 1975