DocumentCode :
865746
Title :
Passivity Enforcement for Transmission Line Models Based on the Method of Characteristics
Author :
Gustavsen, Bjørn
Author_Institution :
SINTEF Energy Res., Trondheim
Volume :
23
Issue :
4
fYear :
2008
Firstpage :
2286
Lastpage :
2293
Abstract :
The universal line model (ULM) has been implemented in several EMT programs for simulation of electromagnetic transients. In some cases, instability problems have been encountered. This paper shows that the current approach for rational function approximation adopted in ULM can lead to large out-of-band passivity violations, thereby causing an unstable simulation. An approach is introduced which prevents the occurrence of large passivity violations. Low-frequency violations are avoided by adding an artificial shunt conductance to the diagonal elements of the shunt admittance matrix while high-frequency violations are avoided by introducing artificial attenuation using a low-pass filter. In addition, high-frequency asymptotic passivity is enforced for the characteristic admittance. Any remaining violations are removed by adding a second-order correction term to the model ports. The approach is shown to mitigate instabilities from a cable system transient simulation, without impairing the quality of the model.
Keywords :
EMTP; electric admittance; function approximation; low-pass filters; matrix algebra; transmission network calculations; EMT programs; artificial attenuation; artificial shunt conductance; electromagnetic transients simulation; high-frequency asymptotic passivity; low-pass filter; method of characteristics; passivity enforcement; passivity violations; rational function approximation; second-order correction; shunt admittance matrix; transmission line models; universal line model; Admittance; Delay; Electromagnetic modeling; Fitting; Function approximation; Mathematical model; Power cables; Power system transients; Transmission line matrix methods; Transmission lines; Electromagnetic transients; instability; passivity; transmission line model; universal line model;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2008.919034
Filename :
4626353
Link To Document :
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