William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
A method is presented for designing lossless sliding-block compression schemes that map constrained sequences onto unconstrained ones. The new compression scheme is incorporated into a coding technique for noisy constrained channels, which has applications to magnetic and optical storage. As suggested recently by Immink, the use of a lossless compression code can improve the performance of a modified concatenation scheme where the positions of the error-correcting code and constrained code are reversed (primarily in order to eliminate error propagation due to the constrained code). Examples are presented that demonstrate the advantage of using sliding-block compression over block compression in a noisy constrained setting.
William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
Liat Ein-Dor, Y. Goldschmidt, et al.
IBM J. Res. Dev
David S. Kung
DAC 1998
Frank R. Libsch, Takatoshi Tsujimura
Active Matrix Liquid Crystal Displays Technology and Applications 1997