Title :
Protograph-Based Quasi-Cyclic LDPC Coding for Ultrahigh Density Magnetic Recording Channels
Author :
Lingjun Kong ; Liwen He ; Pingping Chen ; Guojun Han ; Yi Fang
Author_Institution :
Sch. of Comput. Sci. & Technol., Nanjing Univ. of Posts & Telecommun., Nanjing, China
Abstract :
In this paper, protograph-based quasi-cyclic (QC) low-density parity-check (LDPC) codes are proposed for the efficient structure coding of LDPC codes in 2-D intersymbol interference (ISI) ultrahigh density magnetic recording channels, such as bit-patterned magnetic recording and 2-D magnetic recording, where a reduced-complexity 2-D detector based on the iterative row-column soft detection feedback with Gaussian approximation is employed instead of the full 2-D Bahl-Cocke-Jelinek-Raviv detector. The proposed protograph-based codes, whose base matrices are constructed according to the degree sequences for 2-D-ISI channels, have a low-complexity QC encoder structure with a readily parallelizable protograph decoder structure. Simulation results show that the proposed protograph-based QC-LDPC codes outperform the random LDPC codes optimized for additive white Gaussian noise channels. Furthermore, the performance of the QC codes is similar to that exhibited by ISI-optimized random LDPC codes designed for 2-D-ISI channels, while retaining the implementational benefits.
Keywords :
Gaussian processes; cyclic codes; intersymbol interference; iterative decoding; magnetic recording; parity check codes; 2-D intersymbol interference; 2-D magnetic recording; Gaussian approximation; additive white Gaussian noise channels; bit-patterned magnetic recording; iterative row-column soft detection feedback; low-density parity-check codes; protograph-based quasi-cyclic LDPC coding; ultrahigh density magnetic recording channels; AWGN channels; Decoding; Detectors; Encoding; Iterative decoding; Magnetic recording; 2-D intersymbol interference (ISI) channels; low-density parity-check (LDPC) codes; protograph LDPC codes; quasi-cyclic (QC) LDPC codes; two dimensional (2D) intersymbol interference (ISI) channels;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2437397