Title :
Application of the direct Lyapunov method for optimum control of a UPFC
Author :
Azbe, V. ; Mihalic, R.
Author_Institution :
Univ. of Ljubljana, Ljubljana
Abstract :
This paper presents a new control strategy for a UPFC to improve the transient stability of a power system. It is based on a Lyapunov energy function and uses global parameters that give a global optimum. Because present energy functions do not involve a UPFC´s actions, a new term of a structure-preserving energy function that represents a UPFC´s energy function was constructed. The maximum transient-stability improvement is achieved by setting the angle of the series-injected voltage to a value that maximizes the increase of the potential part of the energy function. The control strategy was tested in both longitudinal and IEEE nine-bus machine test systems. The results show that using the proposed control strategy a maximum transient stability can be achieved and that the angle of the series-injected voltage can change its value just a few times during the period of the first-swing angles´ propagation.
Keywords :
Lyapunov methods; load flow control; optimal control; power system control; power system transient stability; IEEE nine-bus machine test systems; Lyapunov energy function; UPFC optimum control; energy function; first-swing angle propagation; power system transient stability; series-injected voltage; structure-preserving energy function; Control systems; Lyapunov method; Power system control; Power system faults; Power system modeling; Power system stability; Power system transients; Power systems; Static VAr compensators; System testing; FACTS devices; Lyapunov methods; Power system control; power system transient stability;
Conference_Titel :
Power Tech, 2005 IEEE Russia
Conference_Location :
St. Petersburg
Print_ISBN :
978-5-93208-034-4
Electronic_ISBN :
978-5-93208-034-4
DOI :
10.1109/PTC.2005.4524639