2010Unpublished venueRequires access

Turbo Equalization Based on Bi-Directional DFE

Seong-Wook Jeong, Jaekyun Moon

Open publisher page 7 citations

Abstract

We utilize a pair of decision feedback equalizers (DFEs) operating in opposite directions in turbo equalization setting to remove the effect of intersymbol interference (ISI) at the receiver. With a specific residual interference processing strategy proposed, the bi-directional DFE (BiDFE) are free from any significant error propagation. A diversity combining scheme is also proposed that effectively combines the extrinsic outputs of two opposite direction DFEs to minimize any correlation that may exist between them. A resulting scheme is a low-complexity equalizer that closely approaches the performance of the much more complex BCJR algorithm at the expense of an increased number of decoder-equalizer iterations. The BiDFE turbo equalizer also provides considerably better performance than the well-known soft linear minimum mean square error (MMSE) equalizer in severe ISI channels. The performance advantages are validated with bit-error-rate (BER) simulations and extrinsic information transfer (EXIT) charts analysis.

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What this paper is about

We utilize a pair of decision feedback equalizers (DFEs) operating in opposite directions in turbo equalization setting to remove the effect of intersymbol interference (ISI) at the receiver. With a specific residual interference processing strategy proposed, the bi-directional DFE (BiDFE) are free from any significant error propagation. A diversity combining scheme is also proposed that effectively combines the extrinsic outputs of two opposite direction DFEs to minimize any correlation that may exist between them. A resulting scheme is a low-complexity equalizer that closely approaches the performance of the much more complex BCJR algorithm at the expense of an increased number of decoder-equalizer iterations. The BiDFE turbo equalizer also provides considerably better performance than the well-known soft linear minimum mean square error (MMSE) equalizer in severe ISI channels. The performance advantages are validated with bit-error-rate (BER) simulations and extrinsic information transfer (EXIT) charts analysis.

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Available abstract

We utilize a pair of decision feedback equalizers (DFEs) operating in opposite directions in turbo equalization setting to remove the effect of intersymbol interference (ISI) at the receiver. With a specific residual interference processing strategy proposed, the bi-directional DFE (BiDFE) are free from any significant error propagation. A diversity combining scheme is also proposed that effectively combines the extrinsic outputs of two opposite direction DFEs to minimize any correlation that may exist between them. A resulting scheme is a low-complexity equalizer that closely approaches the performance of the much more complex BCJR algorithm at the expense of an increased number of decoder-equalizer iterations. The BiDFE turbo equalizer also provides considerably better performance than the well-known soft linear minimum mean square error (MMSE) equalizer in severe ISI channels. The performance advantages are validated with bit-error-rate (BER) simulations and extrinsic information transfer (EXIT) charts analysis.

Key concepts: Turbo equalizer, Intersymbol interference, Turbo, Equalization (audio), Computer science, Bit error rate, Turbo code, Adaptive equalizer

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