Iterative decoding of cyclic codes based on FFT sliding correlator
In this dissertation, our objective is to propose an alternative way of implementing MLD for cyclic block code which might offer better decoding efficiency with relatively fast processing. We successfully designed the soft-in-hard-out ML-decoding of cyclic code based on sliding correlator. BER perfo...
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sg-ntu-dr.10356-193412023-07-04T15:22:29Z Iterative decoding of cyclic codes based on FFT sliding correlator Mohammad Ridwan Septadi. Guan Yong Liang School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering In this dissertation, our objective is to propose an alternative way of implementing MLD for cyclic block code which might offer better decoding efficiency with relatively fast processing. We successfully designed the soft-in-hard-out ML-decoding of cyclic code based on sliding correlator. BER performance results indicate that our decoder performs well as it meets the theoretical expectation by having performance curves which are slightly better than the theoretical upper bound by 0.3-0.4dB for various BCH codes. Furthermore, FFT implementation for the sliding correlator contributes to the fast and efficient processing of our decoder. Master of Philosophy (EEE) 2009-12-10T01:51:17Z 2009-12-10T01:51:17Z 2004 2004 Thesis http://hdl.handle.net/10356/19341 en 83 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering Mohammad Ridwan Septadi. Iterative decoding of cyclic codes based on FFT sliding correlator |
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In this dissertation, our objective is to propose an alternative way of implementing MLD for cyclic block code which might offer better decoding efficiency with relatively fast processing. We successfully designed the soft-in-hard-out ML-decoding of cyclic code based on sliding correlator. BER performance results indicate that our decoder performs well as it meets the theoretical expectation by having performance curves which are slightly better than the theoretical upper bound by 0.3-0.4dB for various BCH codes. Furthermore, FFT implementation for the sliding correlator contributes to the fast and efficient processing of our decoder. |
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Guan Yong Liang |
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Guan Yong Liang Mohammad Ridwan Septadi. |
format |
Theses and Dissertations |
author |
Mohammad Ridwan Septadi. |
author_sort |
Mohammad Ridwan Septadi. |
title |
Iterative decoding of cyclic codes based on FFT sliding correlator |
title_short |
Iterative decoding of cyclic codes based on FFT sliding correlator |
title_full |
Iterative decoding of cyclic codes based on FFT sliding correlator |
title_fullStr |
Iterative decoding of cyclic codes based on FFT sliding correlator |
title_full_unstemmed |
Iterative decoding of cyclic codes based on FFT sliding correlator |
title_sort |
iterative decoding of cyclic codes based on fft sliding correlator |
publishDate |
2009 |
url |
http://hdl.handle.net/10356/19341 |
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1772828872095563776 |