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A clustering technique for digital communications channel equalization using radial basis function networks

IEEE Transactions on Neural Networks · 1993 · Vol. 4(4) · pp. 570–590
Sheng ChenB. MulgrewP.M. Grant

Abstract

The application of a radial basis function network to digital communications channel equalization is examined. It is shown that the radial basis function network has an identical structure to the optimal Bayesian symbol-decision equalizer solution and, therefore, can be employed to implement the Bayesian equalizer. The training of a radial basis function network to realize the Bayesian equalization solution can be achieved efficiently using a simple and robust supervised clustering algorithm. During data transmission a decision-directed version of the clustering algorithm enables the radial basis function network to track a slowly time-varying environment. Moreover, the clustering scheme provides an automatic compensation for nonlinear channel and equipment distortion. Computer simulations are included to illustrate the analytical results.

Blind Source Separation TechniquesNeural Networks and ApplicationsControl Systems and IdentificationComputer scienceCluster analysisRadial basis functionRadial basis function networkEqualization (audio)Channel (broadcasting)Basis (linear algebra)AlgorithmArtificial intelligenceArtificial neural network

Funding

  • University of Edinburgh
Citations
799
FWCI
15.61
field-weighted impact
References
24
Percentile
100%
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Citations per year
References
Networks for approximation and learning
Proceedings of the IEEE · 1990 · 3,267 citations
Orthogonal least squares learning algorithm for radial basis function networks
IEEE Transactions on Neural Networks · 1991 · 3,352 citations
Fast Learning in Networks of Locally-Tuned Processing Units
Neural Computation · 1989 · 4,203 citations
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