Publication | Closed Access
Robust decoding of variable-length encoded Markov sources using a three-dimensional trellis
40
Citations
9
References
2003
Year
Three-dimensional TrellisEngineeringIterative DecodingChannel CodingSpeech RecognitionDistributed Source CodingBcjr AlgorithmRobust DecodingJoint Source-channel CodingCoding TheoryVariable-length CodeComputer EngineeringComputer ScienceData CompressionError Correction CodeSignal ProcessingModulation CodingState RepresentationMarkov Sources
In this letter, we present an improved index-based a-posteriori probability (APP) decoding approach for the error-resilient transmission of packetized variable-length encoded Markov sources. The proposed algorithm is based on a novel two-dimensional (2D) state representation which leads to a three-dimensional trellis with unique state transitions. APP decoding on this trellis is realized by employing a 2D version of the BCJR algorithm where all available source statistics can be fully exploited in the source decoder. For an additional use of channel codes the proposed approach leads to an increased error-correction performance compared to a one-dimensional state representation.
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