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Low Complexity Noise Predictive Maximum Likelihood Detection Method for High Density Perpendicular Magnetic Recording:  

김성환 (동국대학교 전자공학과)
이주현 (동국대학교 전자공학과)
이재진 (동국대학교 전자공학과)
Abstract
Noise predictive maximum likelihood(NPML) detector embeds noise predictions/ whitening process in branch metric calculation of Viterbi detector and improves the reliability of branch metric computation. Therefore, PRML detector with a noise predictor achieves some performance improvement and has an advantage of low complexity. This paper shows that NP(1221)ML system through noise predictive PR-equalized signal has less complexity and better performance than high order PR(12321)ML system in high density perpendicular magnetic recording. The simulation results are evaluated using (1) random sequence and (2) run length limited (1,7) sequence, and they are applied to linear channel and nonlinear channel with normalized linear density $1.0{\leq}K_p{\leq}3.0$.
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Times Cited By KSCI : 1  (Citation Analysis)
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1 A study of PRML systems for perpendicular recording using double layered medium /
[ Y. Okamoto;H. Sumiyoshi;T. Kishigami;M. Akamatsu;H. Osawa;H. Saito;H. Muraoka;Y. Nakamura ] / IEEE Trans. Magn.   DOI   ScienceOn
2 Noise-predictive maximum-likelihood(NPML) detection for the magnetic recording channel /
[ E. Eleftheriou;W. Hirt ] / IEEE conf. Records ICC'96
3 수직자기기록을 위한 부분 응답 최대 유사도 시스템의 성능 분석 /
[ 김성환;이준;이재진 ] / 한국통신학회 하계종합학술발표회
4 PRML systems for perpendicular magnetic recording /
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