Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels

This paper considers the use of sequence maximum a posteriori (MAP) decoding of trellis codes. A MAP receiver can exploit any residual redundancy that may exist in the channel encoded signal in the form of memory and/or a nonuniform distribution, thereby providing enhanced performance over very nois...

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Main Author: Al-Semari, S.A. (author)
Other Authors: Alajaji, F. (author), Fuja, T. (author), unknown (author)
Format: article
Published: 1999
Subjects:
Online Access:https://eprints.kfupm.edu.sa/id/eprint/14294/1/14294_1.pdf
https://eprints.kfupm.edu.sa/id/eprint/14294/2/14294_2.doc
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author Al-Semari, S.A.
author2 Alajaji, F.
Fuja, T.
unknown
author2_role author
author
author
author_facet Al-Semari, S.A.
Alajaji, F.
Fuja, T.
unknown
author_role author
dc.creator.none.fl_str_mv Al-Semari, S.A.
Alajaji, F.
Fuja, T.
unknown
dc.date.none.fl_str_mv 1999-07
2020
dc.format.none.fl_str_mv application/pdf
application/msword
dc.identifier.none.fl_str_mv https://eprints.kfupm.edu.sa/id/eprint/14294/1/14294_1.pdf
https://eprints.kfupm.edu.sa/id/eprint/14294/2/14294_2.doc
(1999) Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels. Vehicular Technology, IEEE Transactions on, 48.
dc.language.none.fl_str_mv en
en
dc.publisher.none.fl_str_mv IEEE
dc.relation.none.fl_str_mv https://eprints.kfupm.edu.sa/id/eprint/14294/
dc.rights.*.fl_str_mv info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Computer
dc.title.none.fl_str_mv Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
dc.type.none.fl_str_mv Article
PeerReviewed
info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/article
description This paper considers the use of sequence maximum a posteriori (MAP) decoding of trellis codes. A MAP receiver can exploit any residual redundancy that may exist in the channel encoded signal in the form of memory and/or a nonuniform distribution, thereby providing enhanced performance over very noisy channels, relative to maximum likelihood (ML) decoding. The paper begins with a first-order two-state Markov model for the channel encoder input. A variety of different systems with different source parameters, different modulation schemes, and different encoder complexities are simulated. Sequence MAP decoding is shown to substantially improve performance under very noisy channel conditions for systems with low-to-moderate redundancy, with relative gain increasing as the rate increases. As a result, coding schemes with multidimensional constellations are shown to have higher MAP gains than comparable schemes with two-dimensional (2-D) constellations. The second part of the paper considers trellis encoding of the code-excited linear predictive (CELP) speech coder's line spectral parameters (LSPs) with four-dimensional (4-D) QPSK modulation. Two source LSP models are used. One assumes only intraframe correlation of LSPs while the second one models both intraframe and interframe correlation. MAP decoding gains (over ML decoding) as much as 4 dB are achieved. Also, a comparison between the conventionally designed codes and an I-Q QPSK scheme shows that the I-Q scheme achieves better performance even though the first (sampler) LSP model is used
eu_rights_str_mv openAccess
format article
id KFUPM_285c902b322d2f130d22bcce1c01c0b9
identifier_str_mv (1999) Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels. Vehicular Technology, IEEE Transactions on, 48.
language_invalid_str_mv en
network_acronym_str KFUPM
network_name_str King Fahd University of Petroleum and Minerals
oai_identifier_str oai::14294
publishDate 1999
publisher.none.fl_str_mv IEEE
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
spelling Sequence MAP decoding of trellis codes for Gaussian and RayleighchannelsAl-Semari, S.A.Alajaji, F.Fuja, T.unknownComputerThis paper considers the use of sequence maximum a posteriori (MAP) decoding of trellis codes. A MAP receiver can exploit any residual redundancy that may exist in the channel encoded signal in the form of memory and/or a nonuniform distribution, thereby providing enhanced performance over very noisy channels, relative to maximum likelihood (ML) decoding. The paper begins with a first-order two-state Markov model for the channel encoder input. A variety of different systems with different source parameters, different modulation schemes, and different encoder complexities are simulated. Sequence MAP decoding is shown to substantially improve performance under very noisy channel conditions for systems with low-to-moderate redundancy, with relative gain increasing as the rate increases. As a result, coding schemes with multidimensional constellations are shown to have higher MAP gains than comparable schemes with two-dimensional (2-D) constellations. The second part of the paper considers trellis encoding of the code-excited linear predictive (CELP) speech coder's line spectral parameters (LSPs) with four-dimensional (4-D) QPSK modulation. Two source LSP models are used. One assumes only intraframe correlation of LSPs while the second one models both intraframe and interframe correlation. MAP decoding gains (over ML decoding) as much as 4 dB are achieved. Also, a comparison between the conventionally designed codes and an I-Q QPSK scheme shows that the I-Q scheme achieves better performance even though the first (sampler) LSP model is usedIEEE1999-072020ArticlePeerReviewedinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfapplication/mswordhttps://eprints.kfupm.edu.sa/id/eprint/14294/1/14294_1.pdfhttps://eprints.kfupm.edu.sa/id/eprint/14294/2/14294_2.doc (1999) Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels. Vehicular Technology, IEEE Transactions on, 48. enenhttps://eprints.kfupm.edu.sa/id/eprint/14294/info:eu-repo/semantics/openAccessoai::142942019-11-01T14:05:11Z
spellingShingle Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
Al-Semari, S.A.
Computer
status_str publishedVersion
title Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
title_full Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
title_fullStr Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
title_full_unstemmed Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
title_short Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
title_sort Sequence MAP decoding of trellis codes for Gaussian and Rayleighchannels
topic Computer
url https://eprints.kfupm.edu.sa/id/eprint/14294/1/14294_1.pdf
https://eprints.kfupm.edu.sa/id/eprint/14294/2/14294_2.doc