DocumentCode :
160270
Title :
Matrix converter based UPFC for transient stability enhancement using Fuzzy Logic Control
Author :
Udhayashankar, C. ; Thottungal, R. ; Sundaram, N. Mohana
Author_Institution :
EEE Dept., Kumaraguru Coll. of Technol., Coimbatore, India
fYear :
2014
fDate :
9-11 Jan. 2014
Firstpage :
1
Lastpage :
4
Abstract :
With rapid advancements in the high power semiconductor devices and their control features, the power system stability improvement has become feasible with various types of FACTS (Flexible AC Transmission Systems) controllers. Among them, the most widely preferred device is Unified Power Flow Controller (UPFC), which employs two back to back inverters connected via DC link capacitor. The capacitor brings in several disadvantages and affects the system reliability. This paper proposes to replace the converter topology with a Matrix Converter (MC), which allows direct ac to ac power conversion without any energy storage. Further, the performance of UPFC mainly depends on how quickly and accurately compensation signals are derived. In this regard, the existing controller mechanism can be altered with a Fuzzy based controller. A realistic 14-bus test system is used to model the system. The MC-UPFC along with Fuzzy Logic Controller is simulated in this test system using MATLAB. The simulation results show that the controller enhances dynamic stability of the system with good robustness.
Keywords :
AC-AC power convertors; energy storage; flexible AC transmission systems; fuzzy control; invertors; load flow control; matrix convertors; power semiconductor devices; power system reliability; power system stability; AC-AC power conversion; DC link capacitor; FACTS controllers; MATLAB; MC-UPFC; back to back inverters; converter topology; energy storage; flexible AC transmission systems; fuzzy based controller; fuzzy logic control; high power semiconductor devices; matrix converter; power system stability; transient stability enhancement; unified power flow controller; Flexible AC transmission systems; Fuzzy logic; Load flow; Matrix converters; Power system stability; Thermal stability; Voltage control; FACTS; Fuzzy Logic; Matrix Converter; Power Oscillation Damping; UPFC;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advances in Electrical Engineering (ICAEE), 2014 International Conference on
Conference_Location :
Vellore
Type :
conf
DOI :
10.1109/ICAEE.2014.6838504
Filename :
6838504
Link To Document :
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