Title :
Novel damping control schemes using the unified power flow controller and fuzzy theory
Author :
Ma, Tsao-Tsung ; Lee, Ming-Han
Author_Institution :
Dept. of EE, Nat. United Univ., Miaoli, Taiwan
Abstract :
This paper proposes a novel UPFC damping control scheme using fuzzy controllers working on local signals. The design of controller is based on the time-domain analysis of the system transient energy function (TEF) and implemented by using fuzzy controllers to damp low frequency electromechanical power oscillations. The detailed design procedure of fuzzy based damping controllers is firstly addressed. Comprehensive computer simulations are then carried out to verify the feasibility of the proposed control scheme. The control effectiveness of using a combination of different control modes in the UPFC system with respect to different local input signals to improve the transient performance of power systems is investigated and discussed in full. The simulation results on the IEEE 9-BUS test system reconfirm that the proposed damping control scheme is practically implementable and the UPFC is the most powerful FACTS device which is able to provide flexible control functions required for the real-time power flow regulation and fast transient control of power systems.
Keywords :
circuit oscillations; control system analysis; flexible AC transmission systems; fuzzy control; load flow control; power supply quality; power system control; power system transient stability; time-domain analysis; FACTS device; IEEE 9-bus test system; damping control; electromechanical power oscillation; fast transient control; fuzzy control; fuzzy theory; power system transient; real time power flow regulation; time domain analysis; transient energy function; unified power flow controller; Control systems; Damping; Fuzzy control; Load flow; Power system control; Power system simulation; Power system transients; Power systems; Time domain analysis; Transient analysis; flexible ac transmission system; power flow control; transient energy function; unified power flow controller;
Conference_Titel :
Power Electronics and Drive Systems, 2009. PEDS 2009. International Conference on
Conference_Location :
Taipei
Print_ISBN :
978-1-4244-4166-2
Electronic_ISBN :
978-1-4244-4167-9
DOI :
10.1109/PEDS.2009.5385868