Title :
A voltage-behind-reactance induction machine model for the EMTP-Type solution
Author :
Wang, Liwei ; Jatskevich, Juri
Author_Institution :
Univ. of British Columbia, Vancouver, BC, Canada
Abstract :
Recently, there has been renewed interest in modeling of electrical machines for the EMTP-type programs, with the goal of improving the machine-network interface. In this paper, we present a new voltage-behind-reactance induction machine model for the EMTP-type solution and power system transients. In the proposed model, the stator circuit is represented in phase coordinates and the rotor subsystem is expressed in arbitrary reference frame. Similar to the recently proposed synchronous-machine voltage-behind-reactance model and the established phase-domain model, simultaneous solution of the machine-network electrical variables is achieved. Efficient numerical implementation of the proposed model is presented, in which one time-step requires as little as 108 flops, taking 1.6 mirco-second of CPU time. Case studies of induction machine start-up transients demonstrate that the proposed model is more accurate and efficient than several existing EMTP machine models.
Keywords :
asynchronous machines; power system transients; rotors; synchronous machines; EMTP-type solution; machine-network interface; numerical implementation; phase-domain model; power system transients; rotor subsystem; synchronous-machine voltage-behind-reactance model; time 1.6 mus; voltage-behind-reactance induction machine model; Circuits; EMTP; Induction machines; Power system modeling; Power system transients; Stators; Voltage;
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.2009.5275842