DocumentCode :
823839
Title :
SNR merits of binary modulation codes in equalized digital recording systems
Author :
Bergmans, Jan W M
Author_Institution :
Philips Res. Lab., Eindhoven, Netherlands
Volume :
10
Issue :
1
fYear :
1992
fDate :
1/1/1992 12:00:00 AM
Firstpage :
157
Lastpage :
167
Abstract :
For a digital recording system with a binary modulation encoder and a linearly dispersive channel with additive noise, the author determines optimum mean-square performance of the linear, partial-response, and decision-feedback equalizers. The analysis revolves around the power spectral density A(Ω) of the code and the folded signal-to-noise ratio X(Ω) of the channel. The latter function is analyzed for stylized optical and magnetic recording channels. For all equalizers it is shown that the effect of coding is similar to increasing X(Ω) by an additive portion 1/A(Ω). This favors depressions of A(Ω) at frequencies where X(Ω) is poor. However, for A(Ω) to have any depressions, the signaling rate must be increased with respect to uncoded storage, and this inevitably degrades X(Ω). At high information densities the degradation is often too large for coding to be rewarding. Examples serve to illustrate these results
Keywords :
codes; equalisers; magnetic recording; modulation; optical storage; random noise; telecommunication channels; SNR; binary modulation codes; binary modulation encoder; coding; decision-feedback equalizers; equalized digital recording systems; folded signal-to-noise ratio; information densities; linear equalisers; linearly dispersive channel; magnetic recording channels; optical recording channel; partial response equalisers; power spectral density; signaling rate; Additive noise; Decision feedback equalizers; Degradation; Digital modulation; Digital recording; Dispersion; Magnetic analysis; Modulation coding; Signal analysis; Signal to noise ratio;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.124475
Filename :
124475
Link To Document :
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