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Performance of Low-Density Parity Check Codes With Parity Encoded by (1,7) Run-Length Limited Code for Perpendicular Magnetic Recording

Authors
Kim, JinyoungLee, JaejinLee, Joohyun
Issue Date
Nov-2012
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Low-density parity check (LDPC) codes; maximum transition run (MTR) codes; perpendicular magnetic channel; run-length limited (RLL) codes
Citation
IEEE TRANSACTIONS ON MAGNETICS, v.48, no.11, pp.4610 - 4613
Journal Title
IEEE TRANSACTIONS ON MAGNETICS
Volume
48
Number
11
Start Page
4610
End Page
4613
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/12321
DOI
10.1109/TMAG.2012.2197736
ISSN
0018-9464
Abstract
Maximum transition run (MTR) codes have recently been applied for perpendicular magnetic recording because of their high code rate. At the same time, the (1, 7) run-length limited (RLL) code, which increases the minimum distance of data transition, has not been applied due to a code rate that is lower than MTR codes. Therefore, in order to receive the advantages of both codes when low-density parity check (LDPC) codes are applied, this paper proposes an LDPC coding scheme with parity encoded by (1, 7) RLL code. This will increase the performance of LDPC codes and minimize the loss of code rate with MTR-coded user data in the perpendicular magnetic recording channel. The Viterbi trellis is easily modified by different constraints of MTR and (1, 7) RLL codes. Simulation results show that MTR-coded user data with (1, 7) RLL-coded LDPC parity performs approximately 0.3 dB better than MTR-coded user data with parity. It also performs better regardless of various user bit densities.
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