DocumentCode :
1393133
Title :
Design of analog equalizers for partial response detection in magnetic recording
Author :
Mathew, George ; Farhang-Boroujeny, B. ; Ng, Chong Yuan
Author_Institution :
Dept. of Coding & Signal Process., Nat. Univ. of Singapore, Singapore
Volume :
36
Issue :
4
fYear :
2000
fDate :
7/1/2000 12:00:00 AM
Firstpage :
2098
Lastpage :
2108
Abstract :
Analog equalizers offer several advantages, such as high speed, small size, low power, and minimum delay, over sampled digital equalizers. (In this paper, the phrase analog equalizer refers to continuous-time equalizers having poles and zeros.) However, because of their feedback nature, their design often involves extensive search procedures. Recently, an analytical design technique based on equation-error formulation was proposed. In this paper, we study this approach for partial response (PR) equalization and show that it is quite sensitive to the choice of timing phase and it could result in quite suboptimal solution. We improve on it by using an iterative approach similar to that of Steiglitz and McBride. We also present a thorough simulation study to assess the performance loss incurred by low-order analog equalizers and produce performance charts that can be used for selecting the PR target for different channel characteristics. Application of this approach to multi-level decision feedback equalization detection is also discussed
Keywords :
decision feedback equalisers; equalisers; iterative methods; magnetic recording; partial response channels; signal detection; analog equalizer; channel characteristics; continuous-time equalizer; design; equation error; iterative method; magnetic recording; multi-level decision feedback equalization; numerical simulation; partial response detection; Delay; Detectors; Equalizers; Equations; Finite impulse response filter; Low pass filters; Magnetic recording; Performance loss; Pulse shaping methods; Timing;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.875362
Filename :
875362
Link To Document :
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