Title :
A black-box approach to interfacing white-box transformer models with electromagnetic transients programs
Author :
Gustavsen, Bjorn ; Portillo, Alvaro
Author_Institution :
SINTEF Energy Res., Trondheim, Norway
Abstract :
The standard lightning impulse voltage wave used in transformer factory testing does not properly cover all the overvoltage stresses that a transformer can experience while in service. To properly asses the internal overvoltages that can occur in practice, we propose to interface the manufacturer´s white-box transformer model with EMTP-type simulation tools using a black-box modeling approach. From the white-box model we compute in the frequency domain data for the blackbox model which are fitted with rational functions, including voltage transfer functions from external terminals to internal nodes. The resulting black-box model is easily interfaced with EMTP-type circuit solvers via a Norton equivalent and recursive convolution. Application to the so-called fictitious transformer used by CIGRE A2/C4.39 demonstrates that ground fault initiation on a connected cable can generate internal overvoltages that exceed those of the lightning impulse test.
Keywords :
EMTP; earthing; frequency-domain analysis; lightning; overvoltage; power cables; power transformer testing; CIGRE A2-C4.39; EMTP-type simulation tool; Norton equivalent; black-box modeling approach; cable connection; electromagnetic transient program; ground fault initiation; internal overvoltage; lightning impulse testing; overvoltage stress; recursive convolution; standard lightning impulse voltage wave; transformer factory testing; voltage transfer function; white-box transformer model; Admittance; Computational modeling; Integrated circuit modeling; Power transformer insulation; Transfer functions; Voltage control; Windings; EMTP; Transformer; black box model; simulation; white box model;
Conference_Titel :
PES General Meeting | Conference & Exposition, 2014 IEEE
Conference_Location :
National Harbor, MD
DOI :
10.1109/PESGM.2014.6939110