DocumentCode :
1350998
Title :
A Modified Multiport Two-Layer Network Equivalent for the Analysis of Electromagnetic Transients
Author :
Matar, Mahmoud ; Iravani, Reza
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of Toronto, Toronto, ON, Canada
Volume :
25
Issue :
1
fYear :
2010
Firstpage :
434
Lastpage :
441
Abstract :
This paper presents a modified two-layer network equivalent (M-TLNE) that provides a simpler surface layer compared to the original two-layer network equivalent (TLNE) without scarifying accuracy. The M-TLNE further reduces computational time which is of significance for statistical analysis and real-time simulation of electromagnetic transients. The MTLNE is simple, inherently stable, and is adequately accurate for practical applications. This paper also presents a generalized methodology for developing the proposed M-TLNE, based on a low-order vector fitting and a nonlinear least square minimization. The developed methodology is applicable to single and multiport network equivalents for both single and multiphase systems. Applications of the M-TLNE to single and multiport systems are also presented in this paper and the accuracy of the proposed M-TLNE is verified based on comparing the results with those obtained from detailed simulations of the system in the PSCAD/EMTDC simulation environment. A comparison of the M-TLNE with the original TLNE and the frequency-dependant network equivalent is also presented.
Keywords :
EMTP; least squares approximations; minimisation; power system CAD; statistical analysis; PSCAD/EMTDC simulation; computational time; electromagnetic transient analysis; frequency-dependant network equivalent; low-order vector fitting; modified multiport two-layer network equivalent; nonlinear least square minimization; simpler surface layer; statistical analysis; External systems; network equivalents; stability; transmission-line models; vector fitting;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2009.2034785
Filename :
5350383
Link To Document :
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