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Proceedings ArticleDOI

Iterative receiver for single carrier cyclic prefix assisted block transmission systems

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TLDR
An iterative receiver algorithm is derived for single carrier cyclic prefix (CP) assisted block transmission systems based on iterative frequency domain detection and decoding based on soft inter-symbol interference cancellation and minimum mean-square-error equalization.
Abstract
An iterative receiver algorithm is derived for single carrier cyclic prefix (CP) assisted block transmission systems. The proposed algorithm is based on iterative frequency domain detection and decoding. At each iteration, soft inter-symbol interference cancellation (ISIC) and minimum mean-square-error (MMSE) equalization both in the frequency domain are used symbol by symbol to minimize the performance degradation caused by frequency-selective channels. We also consider an approximate implementation of the proposed algorithm suffering from little performance loss in exchange for complexity reduction. The bit-error rate (BER) as a function of the signal-to-noise ratio (SNR) is used as a performance measure. In addition, the convergence characteristic of the iterative loop is studied with the extrinsic information transfer (EXIT) chart.

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Journal ArticleDOI

Convergence behavior of iteratively decoded parallel concatenated codes

TL;DR: A code search based on the EXIT chart technique has been performed yielding new recursive systematic convolutional constituent codes exhibiting turbo cliffs at lower signal-to-noise ratios than attainable by previously known constituent codes.
Journal ArticleDOI

Frequency domain equalization for single-carrier broadband wireless systems

TL;DR: This article surveys frequency domain equalization (FDE) applied to single-carrier (SC) modulation solutions and discusses similarities and differences of SC and OFDM systems and coexistence possibilities, and presents examples of SC-FDE performance capabilities.
Journal ArticleDOI

Minimum mean squared error equalization using a priori information

TL;DR: This work explores a number of low-complexity soft-input/soft-output (SISO) equalization algorithms based on the minimum mean square error (MMSE) criterion and shows that for the turbo equalization application, the MMSE-based SISO equalizers perform well compared with a MAP equalizer while providing a tremendous complexity reduction.
Proceedings ArticleDOI

Linear time and frequency domain turbo equalization

TL;DR: This work rederive existing linear equalization algorithms applicable to turbo equalization for 2/sup m/-ary signal alphabets and compare their computational complexity, selecting for each iteration the most suitable of the two algorithms with lowest computational complexity.
Proceedings ArticleDOI

Block equalization techniques in the frequency domain

TL;DR: Performance results for both uncoded and coded PSK transmissions show the efficacy of the proposed equalization techniques and their superiority over other existing frequency domain equalization strategies.
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