• DocumentCode
    1399458
  • Title

    Analysis of Nonlinear Transition Shift and Write Precompensation in Perpendicular Recording Systems

  • Author

    Wu, Zheng ; Siegel, Paul H. ; Wolf, Jack K. ; Bertram, H. Neal

  • Author_Institution
    Center for Magn. Recording Res., Univ. of California, La Jolla, CA, USA
  • Volume
    28
  • Issue
    2
  • fYear
    2010
  • fDate
    2/1/2010 12:00:00 AM
  • Firstpage
    158
  • Lastpage
    166
  • Abstract
    In high density perpendicular magnetic recording channels, nonlinear transition shift (NLTS) is one of the distortions that can degrade the system performance. Write precompensation is a standard method used to combat the negative effect of NLTS. In this paper, we present an analysis of the bit-error-rate (BER) for perpendicular recording systems with NLTS and write precompensation. Media jitter noise and additive white Gaussian noise are also considered in the model. A BER lower bound is derived, as well as a more easily computed estimate of the bound. The write precompensation values that numerically minimize the estimate of the BER lower bound prove to be very close to those found using Monte-Carlo channel simulation. We then apply these methods to the design of multilevel precompensation schemes, for which the optimization of precompensation values by Monte-Carlo channel simulation is computationally infeasible. The results show that for higher recording densities subject to increased ISI and noise, the use of more complex precompensation schemes does not significantly improve the system performance.
  • Keywords
    AWGN; Monte Carlo methods; data recording; error statistics; interference (signal); jitter; Monte Carlo channel simulation; additive white Gaussian noise; bit error rate; density perpendicular magnetic recording channel; media jitter noise; multilevel precompensation scheme; nonlinear transition shift; perpendicular recording system; write precompensation; Additive white noise; Bit error rate; Computational modeling; Degradation; Gaussian noise; Jitter; Magnetic analysis; Nonlinear distortion; Perpendicular magnetic recording; System performance; NLTS, write precompensation, jitter noise, perpendicular recording;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2010.100204
  • Filename
    5402482