DocumentCode :
1074506
Title :
Dynamics limited precoding, shaping, and blind equalization for fast digital transmission over twisted pair lines
Author :
Fischer, Robert F. H. ; Gerstacker, Wolfgang H. ; Huber, Johannes B.
Author_Institution :
Inst. for Commun. Eng., Erlangen-Nurnberg Univ.
Volume :
13
Issue :
9
fYear :
1995
fDate :
12/1/1995 12:00:00 AM
Firstpage :
1622
Lastpage :
1633
Abstract :
A new combined precoding/shaping technique for fast digital transmission over twisted pair lines is proposed. Major advantages of this “dynamics shaping” are: dynamics of the signal at the input of the decision device are reduced by a great amount. Thereby, A/D-conversion, adaptive equalization, and symbol timing are rather facilitated. A trade-off between signal dynamics at the transmitter output, decision device input and SNR-gain by noise whitening is offered. For dynamics limitation relevant in practice, gains up to 6 dB are achieved. Additionally, the transmitter can be fixed to a typical application because, in contrast to Tomlinson-Harashima or other precoding techniques, blind adaptive equalization is practicable to remove residual intersymbol interference in the case of a mismatch of precoding and actual cable characteristics. The residual SNR-loss is negligible in most applications. SNR-gains due to noise prediction, channel coding and signal shaping simply can be combined using dynamics shaping. Nevertheless, system complexity is of the order of other precoding/shaping techniques. Although numerical results are only presented for a HDSL-application in the German Telekom subscriber network, the proposed transmission scheme may simplify all kinds of high-speed data communications via copper lines, such as LAN´s, ADSL, CDDI, etc
Keywords :
adaptive equalisers; analogue-digital conversion; channel coding; data communication; digital communication; encoding; intersymbol interference; subscriber loops; twisted pair cables; white noise; A/D-conversion; ADSL; German Telekom subscriber network; HDSL-application; LAN; SNR-gain; adaptive equalization; blind equalization; cable characteristics; channel coding; decision device input; dynamics limited precoding; fast digital transmission; high-speed data communications; noise prediction; noise whitening; residual intersymbol interference; signal dynamics; signal shaping; symbol timing; transmitter output; twisted pair lines; AWGN; Adaptive equalizers; Additive white noise; Blind equalizers; DSL; Decision feedback equalizers; Gaussian noise; Intersymbol interference; Noise shaping; Transmitters;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.475535
Filename :
475535
Link To Document :
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