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Trellis decoding technique for block RLL/ECC.

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Trellis decoding technique for block RLL/ECC. / Markarian, G. S.; Honary, B.
In: IEE Proceedings - Communications, Vol. 141, No. 5, 1994, p. 297-302.

Research output: Contribution to Journal/MagazineJournal article

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Markarian GS, Honary B. Trellis decoding technique for block RLL/ECC. IEE Proceedings - Communications. 1994;141(5):297-302. doi: 10.1049/ip-com:19941275 Additional Information

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Markarian, G. S. ; Honary, B. / Trellis decoding technique for block RLL/ECC. In: IEE Proceedings - Communications. 1994 ; Vol. 141, No. 5. pp. 297-302.

Bibtex

@article{e6146557833743c1a0b2433e431762fa,
title = "Trellis decoding technique for block RLL/ECC.",
abstract = "A new simple encoding technique that allows the design of almost all known block runlength-limited error control codes is described. Attention is focused on the most widely used codes (Hamming, Reed-Muller, Golay) with RLL properties. The trellis design procedure for the proposed codes is introduced. It is shown that the trellises of the designed codes are similar to the trellises of the coset codes designed by Forney (1988), and provide low-complexity soft maximum-likelihood performance.",
keywords = "encoding technique, decoding technique, block run length-limited error control codes, Hamming codes, Reed-Muller codes, Golay codes, trellis design procedure, coset codes, low-complexity soft maximum-likelihood performance, generalised array codes",
author = "Markarian, {G. S.} and B. Honary",
year = "1994",
doi = "10.1049/ip-com:19941275 Additional Information",
language = "English",
volume = "141",
pages = "297--302",
journal = "IEE Proceedings - Communications",
publisher = "Institute of Electrical Engineers",
number = "5",

}

RIS

TY - JOUR

T1 - Trellis decoding technique for block RLL/ECC.

AU - Markarian, G. S.

AU - Honary, B.

PY - 1994

Y1 - 1994

N2 - A new simple encoding technique that allows the design of almost all known block runlength-limited error control codes is described. Attention is focused on the most widely used codes (Hamming, Reed-Muller, Golay) with RLL properties. The trellis design procedure for the proposed codes is introduced. It is shown that the trellises of the designed codes are similar to the trellises of the coset codes designed by Forney (1988), and provide low-complexity soft maximum-likelihood performance.

AB - A new simple encoding technique that allows the design of almost all known block runlength-limited error control codes is described. Attention is focused on the most widely used codes (Hamming, Reed-Muller, Golay) with RLL properties. The trellis design procedure for the proposed codes is introduced. It is shown that the trellises of the designed codes are similar to the trellises of the coset codes designed by Forney (1988), and provide low-complexity soft maximum-likelihood performance.

KW - encoding technique

KW - decoding technique

KW - block run length-limited error control codes

KW - Hamming codes

KW - Reed-Muller codes

KW - Golay codes

KW - trellis design procedure

KW - coset codes

KW - low-complexity soft maximum-likelihood performance

KW - generalised array codes

U2 - 10.1049/ip-com:19941275 Additional Information

DO - 10.1049/ip-com:19941275 Additional Information

M3 - Journal article

VL - 141

SP - 297

EP - 302

JO - IEE Proceedings - Communications

JF - IEE Proceedings - Communications

IS - 5

ER -