Title :
Development of a Wind Interior Permanent-Magnet Synchronous Generator-Based Microgrid and Its Operation Control
Author :
Kai-Wei Hu ; Chang-Ming Liaw
Author_Institution :
Dept. of Electr. Eng., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Abstract :
This paper presents the development of a wind interior permanent-magnet synchronous generator (IPMSG)-based dc microgrid and its operation control. First, the derated characteristics of PMSG systems with various ac/dc converters and operation controls are comparatively analyzed. Then, the IPMSG followed by a three-phase Vienna switch-mode rectifier is developed to establish the common dc bus of dc microgrid. Good developed power and voltage regulation characteristics are achieved via the proposed commutation tuning, robust current, and voltage controls. Second, a single-phase three-wire inverter is constructed to serve as the test load. Good ac 220 V/110 V output voltage waveforms under unknown and nonlinear loads are preserved by the developed robust waveform tracking control scheme. Third, a battery energy storage system is established, and the fast energy storage support response is obtained via the proposed droop control approach with adaptive predictive current control method. In addition, a chopped dump load is equipped to enhance the energy balance control flexibility.
Keywords :
adaptive control; battery storage plants; distributed power generation; electric current control; invertors; permanent magnet generators; power generation control; predictive control; rectifying circuits; robust control; switched mode power supplies; synchronous generators; voltage control; wind power plants; AC output voltage waveforms; AC-DC converters; IPMSG system; adaptive predictive current control method; battery energy storage system; chopped dump load; common dc bus; commutation tuning; droop control approach; energy balance control flexibility; fast energy storage support response; nonlinear loads; power regulation characteristics; robust current control; robust waveform tracking control scheme; single-phase three-wire inverter; three-phase Vienna switch-mode rectifier; voltage 110 V; voltage 220 V; voltage controls; voltage regulation characteristics; wind interior permanent-magnet synchronous generator-based DC microgrid; Adaptive control; Generators; Robust control; Robustness; Switches; Voltage control; Wind power generation; 1P3W inverter; BESS; Battery energy storage system (BESS); IPMSG; Vienna; Vienna SMR; commutation tuning; droop control; dump load; interior permanent-magnet synchronous generator (IPMSG); predictive current control; robust control; single-phase three-wire (1P3W) inverter; switch-mode rectifier (SMR); wind generator;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2360563