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A simplified noise-predictive partial response maximum likelihood detection using M-algorithm for perpendicular magnetic recording channels | IEEE Journals & Magazine | IEEE Xplore

A simplified noise-predictive partial response maximum likelihood detection using M-algorithm for perpendicular magnetic recording channels


Abstract:

We propose a simplified noise-predictive partial response maximum likelihood (NPML) system in conjunction with M-algorithm for dual-layered perpendicular magnetic recordi...Show More

Abstract:

We propose a simplified noise-predictive partial response maximum likelihood (NPML) system in conjunction with M-algorithm for dual-layered perpendicular magnetic recording channels. The complexity, which is increased by the construction of noise prediction filter, can be reduced through the M-algorithm. Despite the complexity of the proposed scheme (M=4) is decreased to 1/4 than one of the full NP(12321)ML system, two systems maintain almost the same bit-error rate and the detection performance of the noise-predictive maximum likelihood is better than that of the conventional PRML.
Published in: IEEE Transactions on Magnetics ( Volume: 41, Issue: 2, February 2005)
Page(s): 1064 - 1066
Date of Publication: 28 February 2005

ISSN Information:


I. Introduction

Perpendicular magnetic recording (PMR) schemes are a technology for achieving high magnetic recording density beyond the super-paramagnetic limitation. The PMR system with a single-pole-type (SPT) head provides a practical approach for high-density hard disk drives [1]–[3].

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References

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