DocumentCode :
1499151
Title :
Joint TA Suppression and Turbo Equalization for Coded Partial Response Channels
Author :
Kovintavewat, Piya ; Koonkarnkhai, Santi
Author_Institution :
Data Storage Technol. Res. Unit, Nakhon Pathom Rajabhat Univ., Nakhon Pathom, Thailand
Volume :
46
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1393
Lastpage :
1396
Abstract :
Thermal asperities (TAs) cause a crucial problem in magnetic recording systems because they can cause a burst of errors in data detection process. Without a TA detection and correction algorithm, the system performance can be unacceptable, depending on how severe the TA effect is. This paper proposes an iterative scheme to suppress the TA effect. This scheme jointly performs TA suppression and turbo equalization on the partial-response channels with error-correction codes. At each turbo iteration, an improved readback signal is obtained by subtracting the reconstructed TA signal from the TA-affected readback signal, where the reconstructed TA signal is computed based on a least-squares fitting technique with an aid of soft decisions from previous turbo iterations. Simulation results indicate that the proposed scheme outperforms the conventional receiver with separate TA suppression and turbo equalization, and is only marginally more complex than the conventional receiver.
Keywords :
equalisers; error correction codes; error detection codes; iterative methods; least squares approximations; magnetic recording; partial response channels; signal reconstruction; turbo codes; TA signal reconstruction; TA-affected readback signal; coded partial response channels; data detection process; iterative scheme; least-squares fitting technique; magnetic recording systems; thermal asperity correction; thermal asperity suppression; turbo equalization; Error correction codes; Filters; Iterative decoding; Magnetic recording; Partial response channels; Perpendicular magnetic recording; Rough surfaces; Surface roughness; System performance; Voltage; Coded partial-response channel; iterative method; thermal asperity detection and correction; turbo equalization;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2010.2042572
Filename :
5467555
Link To Document :
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