Title :
A calculation for the compensation voltages in dynamic voltage restorers by use of PQR power theory
Author :
Kim, Hyosung ; Lee, Sang-Joon ; Sul, Seung-Ki
Author_Institution :
Dept. of Control Eng., Cheonan Nat. Techn. Coll., South Korea
Abstract :
This paper discusses how to calculate the compensation voltages in dynamic voltage restorers (DVR) by use of PQR power theory. Directly sensed three-phase voltages are transformed to p-q-r coordinates without time delay, then the reference voltages in p-q-r coordinates have very simple form: dc values. The controller in p-q-r coordinates is very simple and clear, has better steady state and dynamic performance than conventional controllers. The controlled variables in p-q-r coordinates are then inversely transformed to the original a-b-c coordinates instantaneously, generating reference compensation voltages to a DVR. The control algorithm can be used for various kinds of series compensators such as dynamic voltage restorers (DVR), series active filters (SAP), synchronous static series compensators (SSSC), and bootstrap variable inductances (BVI). The control algorithm was applied to an experimental DVR system. The experimental results verified the performance of the proposed control algorithm.
Keywords :
active filters; controllers; inductance; static VAr compensators; voltage control; PQR power theory; abc coordinates; bootstrap variable inductances; compensation voltages; control algorithm; controller; dynamic performance; dynamic voltage restorers; pqr coordinates; series active filters; steady state performance; synchronous static series compensators; Circuit faults; Computer science; Control engineering; Control systems; Delay effects; Educational institutions; Power quality; Power system restoration; Steady-state; Voltage control;
Conference_Titel :
Applied Power Electronics Conference and Exposition, 2004. APEC '04. Nineteenth Annual IEEE
Print_ISBN :
0-7803-8269-2
DOI :
10.1109/APEC.2004.1295864