Title :
An extended dual decision-feedback equalizer for high-density perpendicular magnetic recording channels
Author :
Woo, Choongchae ; Cho, Hangyu ; Hong, Daesik
Author_Institution :
Inf. & Telecommun. Lab., Yonsei Univ., Seoul, South Korea
fDate :
9/1/2002 12:00:00 AM
Abstract :
Partial-response maximum-likelihood (PRML) systems are powerful and indispensable for high-density perpendicular magnetic recording channels. However, high-order partial-response (PR) targets must be considered because of severe intersymbol interference (ISI). On the other hand, decision feedback equalization (DFE) has very low complexity. DFE can be used with high code rate modulation codes, thanks to the fact that DFE does not use a minimum run constraint as a multilevel DFE (MDFE). At high recording densities, dual detection schemes such as dual DFE (DDFE) significantly improve performance and reduce error propagation. So, we compare DDFE detectors with PR(1221)ML and PR(12321)ML on 16/17 maximum transition run (MTR) (3,11)-coded perpendicular magnetic recording channels and propose an extended DDFE that represents a dual version of the DDFE. Simulation results show that the DDFE has a bit-error-rate (BER) performance comparable to that for PR(12321)ML. Our extended DDFE in turn shows a performance gain over DDFE and PR(12321)ML at the normalized recording densities 3 and 4.
Keywords :
Gaussian noise; decision feedback equalisers; error statistics; intersymbol interference; maximum likelihood detection; maximum likelihood sequence estimation; partial response channels; perpendicular magnetic recording; white noise; 16/17 maximum transition run channels; BER; DFE; ISI; PR(1221)ML systems; PR(12321)ML systems; PRML; bit-error-rate; dual detection schemes; extended dual decision-feedback equalizer; high code rate modulation codes; high-density magnetic recording; intersymbol interference; magnetic recording channels; maximum-likelihood sequence detection; partial-response maximum-likelihood systems; perpendicular magnetic recording; white Gaussian noise; Bit error rate; Decision feedback equalizers; Detectors; Interference constraints; Intersymbol interference; Magnetic recording; Maximum likelihood detection; Modulation coding; Performance gain; Perpendicular magnetic recording;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2002.801900