• DocumentCode
    3259956
  • Title

    Combating Media Noise for High-Density Optical Recording

  • Author

    Kui Cai ; Yong Ning Foo ; Bergmans, J.W.M.

  • Author_Institution
    Data Storage Inst., Singapore
  • fYear
    2007
  • fDate
    24-28 June 2007
  • Firstpage
    6255
  • Lastpage
    6260
  • Abstract
    Media noise is the dominant noise that severely degrades the channel detector´s performance for high-density optical recording. In this paper, we first propose a simple but general channel model for rewritable optical recording systems with media noise. We further develop various detection approaches to combat media noise. In particular, two novel modifications to the channel detector are proposed: i) monic constrained minimum mean square error (MMSE) based equalization with media noise considerations, and ii) a modified Viterbi detector (VD) accounting for data-dependent noise variance. The proposed modifications provide significant performance gain over the conventional detection approaches that are designed for additive, white and Gaussian noise (AWGN), without increasing the size of the VD trellis. Furthermore, a new constrained parity-check (PC) code and a data-dependent post-processing scheme are proposed based on the modified detection approaches. Simulation results show that compared to the system designed without considering media noise and without PC codes, the proposed scheme achieves an overall performance gain of more than 11 dB at high media noise levels.
  • Keywords
    AWGN; Viterbi detection; data recording; mean square error methods; optical noise; optical signal detection; optical storage; parity check codes; trellis codes; AWGN; MMSE-based equalization; VD trellis code; additive white Gaussian noise; channel detector; combat media noise; data-dependent noise variance; data-dependent post-processing scheme; high-density rewritable optical recording systems; minimum mean square error; modified Viterbi detector; parity-check code; AWGN; Additive white noise; Degradation; Detectors; Gaussian noise; Mean square error methods; Noise level; Optical noise; Optical recording; Performance gain;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communications, 2007. ICC '07. IEEE International Conference on
  • Conference_Location
    Glasgow
  • Print_ISBN
    1-4244-0353-7
  • Type

    conf

  • DOI
    10.1109/ICC.2007.1036
  • Filename
    4289707