Sparse graph-based coding schemes for continuous phase modulations
The use of the continuous phase modulation (CPM) is interesting when the channel represents a strong non-linearity and in the case of limited spectral support; particularly for the uplink, where the satellite holds an amplifier per carrier, and for downlinks where the terminal equipment works very c...
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ndltd-univ-toulouse.fr-oai-oatao.univ-toulouse.fr-160372017-10-11T05:10:10Z Sparse graph-based coding schemes for continuous phase modulations Benaddi, Tarik The use of the continuous phase modulation (CPM) is interesting when the channel represents a strong non-linearity and in the case of limited spectral support; particularly for the uplink, where the satellite holds an amplifier per carrier, and for downlinks where the terminal equipment works very close to the saturation region. Numerous studies have been conducted on this issue but the proposed solutions use iterative CPM demodulation/decoding concatenated with convolutional or block error correcting codes. The use of LDPC codes has not yet been introduced. Particularly, no works, to our knowledge, have been done on the optimization of sparse graph-based codes adapted for the context described here. In this study, we propose to perform the asymptotic analysis and the design of turbo-CPM systems based on the optimization of sparse graph-based codes. Moreover, an analysis on the corresponding receiver will be done. 2015-12-15 PhD Thesis PeerReviewed application/pdf http://oatao.univ-toulouse.fr/16037/1/Benaddi_Tarik.pdf info:eu-repo/semantics/doctoralThesis info:eu-repo/semantics/openAccess Benaddi, Tarik. Sparse graph-based coding schemes for continuous phase modulations. PhD, Réseaux, Télécommunications, Systèmes et Architecture, Institut National Polytechnique de Toulouse, 2015 http://oatao.univ-toulouse.fr/16037/ |
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The use of the continuous phase modulation (CPM) is interesting when the channel represents a strong non-linearity and in the case of limited spectral support; particularly for the uplink, where the satellite holds an amplifier per carrier, and for downlinks where the terminal equipment works very close to the saturation region. Numerous studies have been conducted on this issue but the proposed solutions use iterative CPM demodulation/decoding concatenated with convolutional or block error correcting codes. The use of LDPC codes has not yet been introduced. Particularly, no works, to our knowledge, have been done on the optimization of sparse graph-based codes adapted for the context described here. In this study, we propose to perform the asymptotic analysis and the design of turbo-CPM systems based on the optimization of sparse graph-based codes. Moreover, an analysis on the corresponding receiver will be done. |
author |
Benaddi, Tarik |
spellingShingle |
Benaddi, Tarik Sparse graph-based coding schemes for continuous phase modulations |
author_facet |
Benaddi, Tarik |
author_sort |
Benaddi, Tarik |
title |
Sparse graph-based coding schemes for continuous phase modulations |
title_short |
Sparse graph-based coding schemes for continuous phase modulations |
title_full |
Sparse graph-based coding schemes for continuous phase modulations |
title_fullStr |
Sparse graph-based coding schemes for continuous phase modulations |
title_full_unstemmed |
Sparse graph-based coding schemes for continuous phase modulations |
title_sort |
sparse graph-based coding schemes for continuous phase modulations |
publishDate |
2015 |
url |
http://oatao.univ-toulouse.fr/16037/1/Benaddi_Tarik.pdf |
work_keys_str_mv |
AT benadditarik sparsegraphbasedcodingschemesforcontinuousphasemodulations |
_version_ |
1718553328717135872 |