An enumerative coding technique for DC-free runlength-limited sequences

We present an enumerative technique for encoding and decoding DC-free runlength-limited sequences. This technique enables the encoding and decoding of sequences approaching the maxentropic performance bounds very closely in terms of the code rate and low-frequency suppression capability. Use of fini...

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Vydané v:IEEE transactions on communications Ročník 48; číslo 12; s. 2024 - 2031
Hlavní autori: Braun, V., Schouhamer immink, K.A.
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: New York IEEE 01.12.2000
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract We present an enumerative technique for encoding and decoding DC-free runlength-limited sequences. This technique enables the encoding and decoding of sequences approaching the maxentropic performance bounds very closely in terms of the code rate and low-frequency suppression capability. Use of finite-precision floating-point notation to express the weight coefficients results in channel encoders and decoders of moderate complexity. For channel constraints of practical interest, the hardware required for implementing such a quasi-maxentropic coding scheme consists mainly of a ROM of at most 5 kB.
AbstractList We present an enumerative technique for encoding and decoding DC-free runlength-limited sequences. This technique enables the encoding and decoding of sequences approaching the maxentropic performance bounds very closely in terms of the code rate and low-frequency suppression capability. Use of finite-precision floating-point notation to express the weight coefficients results in channel encoders and decoders of moderate complexity. For channel constraints of practical interest, the hardware required for implementing such a quasi-maxentropic coding scheme consists mainly of a ROM of at most 5 kB
We present an enumerative technique for encoding and decoding DC-free runlength-limited sequences. This technique enables the encoding and decoding of sequences approaching the maxentropic performance bounds very closely in terms of the code rate and low-frequency suppression capability. Use of finite-precision floating-point notation to express the weight coefficients results in channel encoders and decoders of moderate complexity. For channel constraints of practical interest, the hardware required for implementing such a quasi-maxentropic coding scheme consists mainly of a ROM of at most 5 kB.
We present an enumerative technique for encoding and decoding dc-free runlength-limited sequences. This technique enables the encoding and decoding of sequences approaching the maxentropic performance bounds very closely in terms of code rate and low-frequency suppression capability. Use of finite-precision floating-point notation to express the weight coefficients results in channel encoders and decoders of moderate complexity. For channel constraints of practical interest, the hardware required for implementing such a quasi-maxentropic coding scheme consists mainly of a ROM of at most 5 kB.
Author Schouhamer immink, K.A.
Braun, V.
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10.1109/30.555784
10.1109/18.532899
10.1109/18.623139
10.1109/49.124483
10.1109/TIT.1973.1054929
10.1109/30.468040
10.1109/20.560123
10.1109/ISIT.1998.708699
10.1109/TIT.1984.1056858
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immink (ref1) 1999
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  article-title: dc-free run-length-limited codes for magnetic recording
  publication-title: IEEE Trans on Magnetic
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SubjectTerms Bit rate
CD recording
Channels
Coding
Decoders
Decoding
Disk recording
Encoders
Encoding
Error correction codes
Floating point arithmetic
Frequency
Hardware
Information theory
Modulation coding
Optical recording
Title An enumerative coding technique for DC-free runlength-limited sequences
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