Comparison of reweighted message passing algorithms for LDPC decoding

Low density parity check (LDPC) codes can be decoded with a variety of decoding algorithms, offering a trade-off in terms of complexity, latency, and performance. We describe seven distinct LDPC decoders and provide a performance comparison for a practical regular LDPC code. Our simulations indicate...

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Vydané v:2013 IEEE International Conference on Communications s. 3264 - 3269
Hlavní autori: Wymeersch, Henk, Penna, Federico, Savic, Vladimir, Jun Zhao
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Jazyk:English
Vydavateľské údaje: IEEE 01.06.2013
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ISBN:9781467331227, 1467331228
ISSN:1550-3607
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Abstract Low density parity check (LDPC) codes can be decoded with a variety of decoding algorithms, offering a trade-off in terms of complexity, latency, and performance. We describe seven distinct LDPC decoders and provide a performance comparison for a practical regular LDPC code. Our simulations indicate that the best performance/latency trade-off is achieved by one version of the reweighted max-product decoder. When latency is not an issue, the traditional sum-product decoder yields the best performance.
AbstractList Low density parity check (LDPC) codes can be decoded with a variety of decoding algorithms, offering a trade-off in terms of complexity, latency, and performance. We describe seven distinct LDPC decoders and provide a performance comparison for a practical regular LDPC code. Our simulations indicate that the best performance/latency trade-off is achieved by one version ofthe reweighted max-product decoder. When latency is not an issue, the traditional sum-product decoder yields the best performance.
Low density parity check (LDPC) codes can be decoded with a variety of decoding algorithms, offering a trade-off in terms of complexity, latency, and performance. We describe seven distinct LDPC decoders and provide a performance comparison for a practical regular LDPC code. Our simulations indicate that the best performance/latency trade-off is achieved by one version of the reweighted max-product decoder. When latency is not an issue, the traditional sum-product decoder yields the best performance.
Author Penna, Federico
Jun Zhao
Wymeersch, Henk
Savic, Vladimir
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  givenname: Henk
  surname: Wymeersch
  fullname: Wymeersch, Henk
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  organization: Chalmers Univ. of Technol., Gothenburg, Sweden
– sequence: 2
  givenname: Federico
  surname: Penna
  fullname: Penna, Federico
  email: federico.penna@hhi.fraunhofer.de
  organization: Fraunhofer Heinrich Hertz Inst., Berlin, Germany
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  givenname: Vladimir
  surname: Savic
  fullname: Savic, Vladimir
  email: vladimir.savic@liu.se
  organization: Linkoping Univ., Linkoping, Sweden
– sequence: 4
  surname: Jun Zhao
  fullname: Jun Zhao
  email: zjun@student.chalmers.se
  organization: Chalmers Univ. of Technol., Gothenburg, Sweden
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Snippet Low density parity check (LDPC) codes can be decoded with a variety of decoding algorithms, offering a trade-off in terms of complexity, latency, and...
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StartPage 3264
SubjectTerms Complexity theory
Decoding
Iterative decoding
LDPC
max-product
Message Passing
Signal to noise ratio
sum-product
Title Comparison of reweighted message passing algorithms for LDPC decoding
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