An efficient transient analysis of lossy lines with nonlinear loads requires the ability to compute and represent a suitable set of line impulse responses. In this paper, we propose the evaluation of the matched-line impulse responses by means of an algorithm for the numerical inversion of the Laplace transform. Based on a discussion of the structure of the impulse responses, we demonstrate how, for this class of functions, the method proposed is particularly effective and convenient, in comparison with the conventional FFT approach. We also compare the line responses due to the exact per-unit-length resistance of a circular wire with those due to a simplified model, and find a non-negligible influence on the integrity of the signals that propagate on the line
Lossy transmission line response via numerical Laplace transform inversion / Maio, Ivano Adolfo; Canavero, Flavio. - STAMPA. - 6:(1994), pp. 133-136. (Intervento presentato al convegno IEEE International Symposium on Circuits and Systems - ISCAS '94 tenutosi a London (UK) nel 30 May - 02 June) [10.1109/ISCAS.1994.409544].
Lossy transmission line response via numerical Laplace transform inversion
MAIO, Ivano Adolfo;CANAVERO, Flavio
1994
Abstract
An efficient transient analysis of lossy lines with nonlinear loads requires the ability to compute and represent a suitable set of line impulse responses. In this paper, we propose the evaluation of the matched-line impulse responses by means of an algorithm for the numerical inversion of the Laplace transform. Based on a discussion of the structure of the impulse responses, we demonstrate how, for this class of functions, the method proposed is particularly effective and convenient, in comparison with the conventional FFT approach. We also compare the line responses due to the exact per-unit-length resistance of a circular wire with those due to a simplified model, and find a non-negligible influence on the integrity of the signals that propagate on the lineFile | Dimensione | Formato | |
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https://hdl.handle.net/11583/2500877
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