DocumentCode
1256755
Title
Simplified EEPR Viterbi detector based on a transformed radix-4 trellis for a disk drive
Author
Tsukano, Kyoko ; Nishiya, Takushi ; Hirai, Tatsuya ; Nara, Takashi
Author_Institution
Syst. Dev. Lab., Hitachi Ltd., Yokohama, Japan
Volume
35
Issue
5
fYear
1999
fDate
9/1/1999 12:00:00 AM
Firstpage
4387
Lastpage
4401
Abstract
A simplified EEPR Viterbi detector based on a transformed radix-4 trellis using 16/17 maximum transition run (MTR) code is developed. The transformed radix-4 trellis is a radix-4 trellis applying the transformed trellis in order to reduce complexity. The proposed Viterbi detector also applies a new simplification method that eliminates low likely states according to the equalized data (inputs of the detector). By this simplification, the ACS circuit size can be reduced to 60% as compared to the original radix-4 Viterbi detector. Moreover, the necessary path memory length for the Viterbi detector is theoretically derived by estimating the probability of the error patterns which can occur on the EEPRML channel using the 16/17 MTR code. Simulations show that the performance of the simplified Viterbi detector does not degrade on such a channel. The proposed simplification of the Viterbi detector is a useful way to implement the high-speed and low-power EEPR Viterbi detector
Keywords
Viterbi detection; digital magnetic recording; disc drives; logic circuits; maximum likelihood detection; partial response channels; trellis codes; 16/17 MTR code; ACS circuit size reduction; EEPR Viterbi detector; EEPRML channel; add-compare-select circuit; complexity reduction; disk drive; error patterns; extended PRML channel; high-speed Viterbi detector; low-power Viterbi detector; maximum transition run code; partial response maximum likelihood; path memory length; simplification method; transformed radix-4 trellis; Circuits; Decoding; Detectors; Disk drives; Intersymbol interference; Magnetic recording; Maximum likelihood detection; Maximum likelihood estimation; Power dissipation; Viterbi algorithm;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.799090
Filename
799090
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