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Improved adaptive decision-feedback equalization with interleaving for coded modulation systems
Conference paper

Improved adaptive decision-feedback equalization with interleaving for coded modulation systems

T. Wang and Chin-Liang Wang
IEEE Xplore Digital Library 1994 IEEE GLOBECOM. Communications: The Global Bridge, Vol.1, p.6
1994

Abstract

Decision feedback equalizers;Interleaved codes;Modulation coding;Hardware;Channel capacity;Detectors;Decoding;Performance gain;Throughput;Delay
Recently, Eyuboglu (1988) has shown that adaptive noise-predictive decision-feedback equalization (DFE) can be combined with coded modulation to approach the channel capacity by periodic interleaving. In this paper, we present a new method of adaptive noise-predictive DFE with periodic interleaving for coded modulation systems. The method is an improved version of that proposed by Eyuboglu, where the deinterleaving operation is performed on a vector-by-vector basis, instead of a sample-by-sample basis. Unlike the original system in which the linear equalizer's coefficients can be adjusted only with hard decisions from the threshold detector, the improved structure has a feature that the coefficients of both the linear equalizer and noise predictor can be updated based on soft decisions from the most likely path in the soft decoder. The improved system achieves better error-rate performance than the original one with a little increase in hardware complexity. As compared to another improved design reported by Zhou et al. (1988, 1990), the new structure also gains advantages in error-rate performance, hardware complexity, and throughput delay

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