Efficient coding schemes for the hard-square model

The hard-square model, also known as the two-dimensional (2-D) (1, /spl infin/)-RLL constraint, consists of all binary arrays in which the 1's are isolated both horizontally and vertically. Based on a certain probability measure defined on those arrays, an efficient variable-to-fixed encoder sc...

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Veröffentlicht in:IEEE transactions on information theory 2001-03, Vol.47 (3), p.1166-1176
Hauptverfasser: Roth, R.M., Siegel, P.H., Wolf, J.K.
Format: Artikel
Sprache:eng
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Zusammenfassung:The hard-square model, also known as the two-dimensional (2-D) (1, /spl infin/)-RLL constraint, consists of all binary arrays in which the 1's are isolated both horizontally and vertically. Based on a certain probability measure defined on those arrays, an efficient variable-to-fixed encoder scheme is presented that maps unconstrained binary words into arrays that satisfy the hard-square model. For sufficiently large arrays, the average rate of the encoder approaches a value which is only 0.1% below the capacity of the constraint. A second, fixed-rate encoder is presented whose rate for large arrays is within 1.2% of the capacity value.
ISSN:0018-9448
1557-9654
DOI:10.1109/18.915673