Physical Review E · 2008 · 11 citations · 22 references
Lossy CompressionEngineeringComputational ComplexityCommittee TreeDistributed Source CodingData ScienceSparse Neural NetworkCoding TheoryLossless CompressionVariable-length CodeParity TreeInformation TheoryPhysicsComputer EngineeringComputer ScienceData CompressionCryptographyBoolean MessagesEntropyComputational NeuroscienceFormal MethodsNeuronal NetworkBrain-like Computing
A lossy data compression scheme for uniformly biased Boolean messages is investigated via statistical mechanics techniques. We utilize a treelike committee machine (committee tree) and a treelike parity machine (parity tree) whose transfer functions are nonmonotonic. The scheme performance at the infinite code length limit is analyzed using the replica method. Both committee and parity treelike networks are shown to saturate the Shannon bound. The Almeida-Thouless stability of the replica symmetric solution is analyzed, and the tuning of the nonmonotonic transfer function is also discussed.
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A Mathematical Theory of Communication
Claude E. Shannon · Bell System Technical Journal · 1948 · 78.4K citations
Near Shannon limit performance of low density paritycheck codes
David Mackay, Radford M. Neal · Electronics Letters · 1997 · 2.7K citations