Title :
A wide-band multi-port system equivalent for real-time digital power system simulators
Author :
Lin, Xi ; Gole, Ani ; Yu, Ming
Author_Institution :
Powertechlabs Inc., BC, Canada
Abstract :
Summary form only given. This paper describes a method of developing wideband multi-port system equivalents for use with real-time digital power system simulators. The proposed equivalent combines a frequency dependent network equivalent (FDNE) for the high frequency electromagnetic transients and a transient stability analysis (TSA) type simulation block for the electromechanical transients. The frequency dependent characteristic for FDNE is obtained by curve-fitting frequency domain admittance characteristics using the vector fitting method. The paper also introduces an approach for approximating the frequency dependent characteristic of large power networks from readily available typical power-flow data. The paper shows how the TSA algorithm can be adapted to a realtime platform. The validity of this method is confirmed with examples, including the study of a multi in-feed HVDC system based network.
Keywords :
curve fitting; digital simulation; frequency-domain analysis; load flow; power system simulation; power system transient stability; vectors; curve-fitting frequency domain admittance characteristics; electromechanical transients; frequency dependent network equivalent; high frequency electromagnetic transients; large power networks; multi in-feed HVDC system based network; power-flow data; real-time digital power system simulator; transient stability analysis type simulation block; vector fitting method; wideband multiport system; Curve fitting; Electromagnetic transients; Frequency dependence; Power system analysis computing; Power system simulation; Power system stability; Power system transients; Real time systems; Transient analysis; Wideband;
Conference_Titel :
Power & Energy Society General Meeting, 2009. PES '09. IEEE
Conference_Location :
Calgary, AB
Print_ISBN :
978-1-4244-4241-6
DOI :
10.1109/PES.2009.5275786