Rateless Coding on Experimental Temporally Correlated FSO Channels

We present a demonstration of two error-correction coding schemes that can successfully operate on a free-space optical (FSO) communication channel subject to atmospheric turbulence. The codes (a puntured Low-density parity-check code and a Raptor code) operate by continuously adapting the informati...

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Published inJournal of lightwave technology Vol. 28; no. 7; pp. 990 - 1002
Main Authors Anguita, J.A., Neifeld, M.A., Hildner, B., Vasic, B.
Format Journal Article
LanguageEnglish
Published IEEE 01.04.2010
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ISSN0733-8724
1558-2213
DOI10.1109/JLT.2010.2040136

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Abstract We present a demonstration of two error-correction coding schemes that can successfully operate on a free-space optical (FSO) communication channel subject to atmospheric turbulence. The codes (a puntured Low-density parity-check code and a Raptor code) operate by continuously adapting the information rate to accommodate the varying channel conditions. Because these coding schemes require the use of a feedback channel, we evaluate the bandwidth cost incurred. The evaluation of the codes is performed offline and uses experimental optical signals recorded from an FSO link. We analyze the temporal characteristics of the experimental channels and compare the performance of the codes for different bit rates to asses the effect of temporal correlation and imperfect channel state information.
AbstractList We present a demonstration of two error-correction coding schemes that can successfully operate on a free-space optical (FSO) communication channel subject to atmospheric turbulence. The codes (a puntured Low-density parity-check code and a Raptor code) operate by continuously adapting the information rate to accommodate the varying channel conditions. Because these coding schemes require the use of a feedback channel, we evaluate the bandwidth cost incurred. The evaluation of the codes is performed offline and uses experimental optical signals recorded from an FSO link. We analyze the temporal characteristics of the experimental channels and compare the performance of the codes for different bit rates to asses the effect of temporal correlation and imperfect channel state information.
Author Vasic, B.
Hildner, B.
Neifeld, M.A.
Anguita, J.A.
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  organization: Electr. & Comput. Eng. Dept., Univ. of Arizona, Tucson, AZ, USA
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Snippet We present a demonstration of two error-correction coding schemes that can successfully operate on a free-space optical (FSO) communication channel subject to...
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SubjectTerms Atmospheric turbulence
Bandwidth
Communication channels
Costs
error-correction coding
free-space optical (FSO) communication
Information analysis
Information rates
laser applications
optical communication
Optical feedback
Optical recording
Parity check codes
Performance analysis
Performance evaluation
rateless coding
soft decoding
time-varying channels
Title Rateless Coding on Experimental Temporally Correlated FSO Channels
URI https://ieeexplore.ieee.org/document/5382537
Volume 28
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