DocumentCode
3603066
Title
An Iterative TMR Mitigation Method Based on Readback Signal for Bit-Patterned Media Recording
Author
Busyatras, Wiparat ; Warisarn, Chanon ; Myint, Lin M. M. ; Supnithi, Pornchai ; Kovintavewat, Piya
Author_Institution
King Mongkut´s Inst. of Technol., Coll. of Data Storage Innovation, Bangkok, Thailand
Volume
51
Issue
11
fYear
2015
Firstpage
1
Lastpage
4
Abstract
Off-track condition or track misregistration (TMR) is one of the most significant problems in the extremely high-density bit-patterned media recording (BPMR) system, since a track pitch becomes narrower. Typically, the TMR can be detected and handled by a servo system; however, it requires some special data to be inserted in the tracks so as to estimate the amount of head offset. Nonetheless, this paper proposes an iterative TMR mitigation method for BPMR systems based on the readback signals. First, we design several pairs of the 2-D asymmetric target and its corresponding 2-D equalizer that match the BPMR channel for each TMR level. Then, we exploit the three adjacent data tracks obtained from the low-density parity-check decoders to estimate the TMR level. Last, a pair of the 2-D asymmetric target and its corresponding 2-D equalizer that is best fit to the estimated TMR level will be used to alleviate the TMR effect in the readback signal for the next global iteration. Simulation results indicate that the proposed system can effectively estimate the TMR level and performs better than the conventional system without a TMR mitigation method, especially when the TMR level is high and/or the position jitter is large.
Keywords
equalisers; iterative methods; magnetic recording; parity check codes; servomechanisms; 2D asymmetric target; 2D equalizer; BPMR channel; BPMR systems; adjacent data tracks; extremely high-density bit-patterned media recording systems; global iteration; head offset; iterative TMR mitigation; low-density parity-check decoders; readback signal; servo system; track misregistration; track pitch; Decoding; Equalizers; Jitter; Media; Parity check codes; Target tracking; Tunneling magnetoresistance; 2-D equalization; 2D equalization; Bit-patterned media recording; bit-patterned media recording (BPMR); inter-track interference; intertrack interference; track mis-registration; track misregistration (TMR);
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2015.2445381
Filename
7123619
Link To Document