Turbo Decoding Using the Sectionalized Minimal Trellis of the Constituent Code: Performance-Complexity Trade-Off
The performance and complexity of turbo decoding using rate k/n constituent codes are investigated. The conventional, minimal and sectionalized trellis modules of the constituent convolutional codes are utilized. The performance metric is the bit error rate (BER), while complexity is analyzed based...
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Published in | IEEE transactions on communications Vol. 61; no. 9; pp. 3600 - 3610 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
New York, NY
IEEE
01.09.2013
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
Online Access | Get full text |
ISSN | 0090-6778 1558-0857 |
DOI | 10.1109/TCOMM.2013.072913.120912 |
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Abstract | The performance and complexity of turbo decoding using rate k/n constituent codes are investigated. The conventional, minimal and sectionalized trellis modules of the constituent convolutional codes are utilized. The performance metric is the bit error rate (BER), while complexity is analyzed based on the number of multiplications, summations and comparisons required by the max-log-MAP decoding algorithm. Our results show that the performance depends on how the systematic bits are grouped in a trellis module. The best performance is achieved when the k systematic bits are grouped together in the same section of the module, so that the log-likelihood ratio (LLR) of the k-bit vector is calculated at once. This is a characteristic of the conventional trellis module and of some of the sectionalizations of the minimal trellis module. Moreover, we show that it is possible to considerably reduce the decoding complexity with respect to the conventional trellis if a particular sectionalization of the minimal trellis module is utilized. In some cases, this sectionalization is found within the best performing group, while in some other cases a small performance loss can be traded off for a large complexity reduction. |
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AbstractList | The performance and complexity of turbo decoding using rate k/n constituent codes are investigated. The conventional, minimal and sectionalized trellis modules of the constituent convolutional codes are utilized. The performance metric is the bit error rate (BER), while complexity is analyzed based on the number of multiplications, summations and comparisons required by the max-log-MAP decoding algorithm. Our results show that the performance depends on how the systematic bits are grouped in a trellis module. The best performance is achieved when the k systematic bits are grouped together in the same section of the module, so that the log-likelihood ratio (LLR) of the k-bit vector is calculated at once. This is a characteristic of the conventional trellis module and of some of the sectionalizations of the minimal trellis module. Moreover, we show that it is possible to considerably reduce the decoding complexity with respect to the conventional trellis if a particular sectionalization of the minimal trellis module is utilized. In some cases, this sectionalization is found within the best performing group, while in some other cases a small performance loss can be traded off for a large complexity reduction. |
Author | Benchimol, Isaac Pimentel, Cecilio Uchoa-Filho, Bartolomeu F. Demo Souza, Richard Moritz, Guilherme Luiz Pellenz, Marcelo Eduardo |
Author_xml | – sequence: 1 givenname: Guilherme Luiz surname: Moritz fullname: Moritz, Guilherme Luiz email: guilherme@eletrica.eng.br organization: CPGEI, Fed. Univ. of Technol. - Parana (UTFPR), Curitiba, Brazil – sequence: 2 givenname: Richard surname: Demo Souza fullname: Demo Souza, Richard email: richard@utfpr.edu.br organization: CPGEI, Fed. Univ. of Technol. - Parana (UTFPR), Curitiba, Brazil – sequence: 3 givenname: Cecilio surname: Pimentel fullname: Pimentel, Cecilio email: cecilio@ufpe.br organization: CODEC/DES, Fed. Univ. of Pernambuco (UFPE), Recife, Brazil – sequence: 4 givenname: Marcelo Eduardo surname: Pellenz fullname: Pellenz, Marcelo Eduardo email: marcelo@ppgia.pucpr.br organization: PPGIA, Pontifical Catholic Univ. (PUC-PR), Curitiba, Brazil – sequence: 5 givenname: Bartolomeu F. surname: Uchoa-Filho fullname: Uchoa-Filho, Bartolomeu F. email: uchoa@eel.ufsc.br organization: GPqCom/EEL, Fed. Univ. of Santa Catarina (UFSC), Florianópolis, Brazil – sequence: 6 givenname: Isaac surname: Benchimol fullname: Benchimol, Isaac email: ibench@ifam.edu.br organization: CMDI, Fed. Inst. of Amazonas (IFAM), Manaus, Brazil |
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Keywords | Performance evaluation Convolutional codes Multiplication Convolutional code Logarithmic function Bit error rate decoding complexity Likelihood ratio Turbo code Decoding turbo codes minimal trellis Algorithm complexity A posteriori estimation Metric |
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SubjectTerms | Applied sciences Bit error rate Codes Coding, codes Complexity Complexity theory Constituents Convolutional codes Decoding decoding complexity Exact sciences and technology Information, signal and communications theory Mathematical analysis Measurement minimal trellis Modules Performance measurement Signal and communications theory Studies Systematics Telecommunications and information theory Tradeoffs Turbo codes Vectors (mathematics) |
Title | Turbo Decoding Using the Sectionalized Minimal Trellis of the Constituent Code: Performance-Complexity Trade-Off |
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