DocumentCode
1506051
Title
Transhybrid loss with RC balance circuits for primary-rate ISDN transmission systems
Author
Moschytz, George S. ; Ahamed, Syed V.
Author_Institution
Inst. of Signal & Inf. Process., Swiss Federal Inst. of Technol., Zurich, Switzerland
Volume
9
Issue
6
fYear
1991
fDate
8/1/1991 12:00:00 AM
Firstpage
951
Lastpage
959
Abstract
The authors report a method for the reduction of the near-end echo in the subscriber loop environment for primary-rate ISDN full-duplex data transmission. The technique uses an RC network as the matching input line impedance at the transmitter to reduce the near-end echo. Data rates ranging from the ISDN basic rate with (2B+D) channels to primary rate with (23B+D) channels are covered. The results indicate that a single basic configuration for the balancing line impedance may be adapted to keep the transhybrid loss in the range of about 22 dB in the worst case over the entire frequency range of interest. The balancing procedure for the hybrid takes place in a training sequence during which the component values of the RC matching circuit are adjusted from their initial values by an iterative adaptation procedure. Two techniques for optimizing the component values have been verified. For all cases examined, including worst-case line configurations, the components of the RC matching circuit have converged to final values, for which the minimum transhybrid loss had a maximum above 20 dB
Keywords
ISDN; impedance matching; losses; network synthesis; subscriber loops; 22 dB; RC balance circuits; RC matching circuit; RC network; balancing line impedance; basic rate; component values optimisation; data rates; frequency range; full-duplex data transmission; iterative adaptation procedure; matching input line impedance; near end echo reduction; primary-rate ISDN; subscriber loop; training sequence; transhybrid loss; transmitter; worst-case line configurations; Analog-digital conversion; Circuits; Costs; Data communication; Echo cancellers; ISDN; Impedance; Propagation losses; Quadrature amplitude modulation; Subscriber loops;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.93105
Filename
93105
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