Parameter estimation of block and helical scan interleavers in the presence of bit errors

In data communication and digital storage applications, interleaver, which rearranges the encoded data stream, follows the channel encoder to prevent burst errors. In general, forward error correction (FEC) codes provide protection against randomly distributed errors, whereas interleaver provides pr...

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Main Authors: Swaminathan, Ramabadran, Madhukumar, A. S., Ng, Wee Teck, See, Chong Meng Samson
Other Authors: School of Computer Science and Engineering
Format: Article
Language:English
Published: 2017
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Online Access:https://hdl.handle.net/10356/81478
http://hdl.handle.net/10220/42262
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-814782020-11-21T20:12:18Z Parameter estimation of block and helical scan interleavers in the presence of bit errors Swaminathan, Ramabadran Madhukumar, A. S. Ng, Wee Teck See, Chong Meng Samson School of Computer Science and Engineering Temasek Laboratories Blind/semi-blind estimation Block interleaver In data communication and digital storage applications, interleaver, which rearranges the encoded data stream, follows the channel encoder to prevent burst errors. In general, forward error correction (FEC) codes provide protection against randomly distributed errors, whereas interleaver provides protection against error bursts. To de-interleave the interleaved data, accurate information about the interleaver parameters is required at the receiver. However, in non-cooperative context, the parameters are either not known or only partially known at the receiver. Therefore, blind/semi-blind estimation of interleaver parameters is mandatory at the receiver in order to successfully de-interleave the interleaved data. In this context, this paper proposes innovative algorithms for the estimation of interleaver parameters such as interleaver period (or size of the interleaver matrix), number of rows and columns of the interleaver matrix, and helical array step size in the presence of bit errors provided the knowledge of type of interleaver is known at the receiver. In addition, it has been assumed that the block and helical scan interleavers follow a convolutional encoder. Accepted version 2017-04-13T06:47:46Z 2019-12-06T14:31:53Z 2017-04-13T06:47:46Z 2019-12-06T14:31:53Z 2017 2016 Journal Article Swaminathan, R., Madhukumar, A. S., Ng, W. T., & See, C. M. S. (2017). Parameter estimation of block and helical scan interleavers in the presence of bit errors. Digital Signal Processing, 60, 20-32. 1051-2004 https://hdl.handle.net/10356/81478 http://hdl.handle.net/10220/42262 10.1016/j.dsp.2016.08.006 197462 60 20 32 197462 en Digital Signal Processing Digital Signal Processing © 2016 Elsevier Inc. All rights reserved. This paper was published in Digital Signal Processing and is made available with permission of Elsevier Inc. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Blind/semi-blind estimation
Block interleaver
spellingShingle Blind/semi-blind estimation
Block interleaver
Swaminathan, Ramabadran
Madhukumar, A. S.
Ng, Wee Teck
See, Chong Meng Samson
Parameter estimation of block and helical scan interleavers in the presence of bit errors
description In data communication and digital storage applications, interleaver, which rearranges the encoded data stream, follows the channel encoder to prevent burst errors. In general, forward error correction (FEC) codes provide protection against randomly distributed errors, whereas interleaver provides protection against error bursts. To de-interleave the interleaved data, accurate information about the interleaver parameters is required at the receiver. However, in non-cooperative context, the parameters are either not known or only partially known at the receiver. Therefore, blind/semi-blind estimation of interleaver parameters is mandatory at the receiver in order to successfully de-interleave the interleaved data. In this context, this paper proposes innovative algorithms for the estimation of interleaver parameters such as interleaver period (or size of the interleaver matrix), number of rows and columns of the interleaver matrix, and helical array step size in the presence of bit errors provided the knowledge of type of interleaver is known at the receiver. In addition, it has been assumed that the block and helical scan interleavers follow a convolutional encoder.
author2 School of Computer Science and Engineering
author_facet School of Computer Science and Engineering
Swaminathan, Ramabadran
Madhukumar, A. S.
Ng, Wee Teck
See, Chong Meng Samson
format Article
author Swaminathan, Ramabadran
Madhukumar, A. S.
Ng, Wee Teck
See, Chong Meng Samson
author_sort Swaminathan, Ramabadran
title Parameter estimation of block and helical scan interleavers in the presence of bit errors
title_short Parameter estimation of block and helical scan interleavers in the presence of bit errors
title_full Parameter estimation of block and helical scan interleavers in the presence of bit errors
title_fullStr Parameter estimation of block and helical scan interleavers in the presence of bit errors
title_full_unstemmed Parameter estimation of block and helical scan interleavers in the presence of bit errors
title_sort parameter estimation of block and helical scan interleavers in the presence of bit errors
publishDate 2017
url https://hdl.handle.net/10356/81478
http://hdl.handle.net/10220/42262
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