William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
We develop density evolution methods for evaluating the performance of Gallager's low-density parity-check (LDPC) codes over binary inter-symbol interference (ISI) channels. In contrast to previous work on memoryless channels, the noise tolerance thresholds for ISI channels depend on the transmitted sequences. The concentration statements are appropriately adjusted to reflect this difference. We compare the thresholds of regular Gallager codes over the 1 - D partial response channel to the i.i.d. information rate, showing that at high code rates, regular Gallager codes are asymptotically optimal.
William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
Tong Zhang, G.H. Golub, et al.
Linear Algebra and Its Applications
Kafai Lai, Alan E. Rosenbluth, et al.
SPIE Advanced Lithography 2007
Guo-Jun Qi, Charu Aggarwal, et al.
IEEE TPAMI