DocumentCode :
1419838
Title :
Channel Models and Detectors for Two-Dimensional Magnetic Recording
Author :
Chan, Kheong Sann ; Radhakrishnan, Rathnakumar ; Eason, Kwaku ; Elidrissi, Moulay Rachid ; Miles, Jim J. ; Vasic, Bane ; Krishnan, Anantha Raman
Author_Institution :
Data Storage Inst. (DSI), Agency for Sci., Technol. & Res. (A*STAR), Singapore, Singapore
Volume :
46
Issue :
3
fYear :
2010
fDate :
3/1/2010 12:00:00 AM
Firstpage :
804
Lastpage :
811
Abstract :
Two-dimensional magnetic recording (TDMR) is a novel recording architecture intended to support densities beyond those of conventional recording systems. The gains from TDMR come primarily from more powerful coding and signal processing algorithms that allow the bits to be packed more tightly on the disk, and yet be retrieved with acceptable error rates. In this paper, we present some preliminary results for an advanced channel model based on micromagnetic simulations, coined the Grain Flipping Probability model. This model requires a one-time computationally complex characterization phase, but subsequently provides fast and accurate two-dimensional (2-D) readback waveforms that include effects captured from micromagnetic simulations and the statistical effects derived from the granularity of the recording medium. We also show the performance of several detectors over a pre-existing TDMR channel model directly as a function of channel density rather than the signal-to-noise ratio (SNR).
Keywords :
magnetic recording; 2D magnetic recording; 2D readback waveforms; TDMR; channel density; channel detectors; channel models; coding algorithms; error rates; grain flipping probability model; micromagnetic simulations; recording medium; signal processing algorithms; signal-to-noise ratio; statistical effects; Computational modeling; Detectors; Disk recording; Error analysis; Magnetic recording; Micromagnetics; Power system modeling; Probability; Signal processing algorithms; Two dimensional displays; 10 ${hbox{Tb/in}}^{2}$ ; 2-D channel detection; 2-D channel models; GFP; micromagnetic simulation; two-dimensional magnetic recording (TDMR);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2035635
Filename :
5415778
Link To Document :
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