Title :
Control of High-Speed Solid-Rotor Synchronous Reluctance Motor/Generator for Flywheel-Based Uninterruptible Power Supplies
Author :
Park, Jae-Do ; Kalev, Claude ; Hofmann, Heath F.
Author_Institution :
Pentadyne Power Corp., Chatsworth, CA
Abstract :
A hybrid controller, consisting of a model-based feedforward controller and a proportional-integral feedback compensator, for a solid-rotor synchronous reluctance motor/generator in a high-speed flywheel-based uninterruptible power supply application is proposed in this paper. The feedforward controller takes most of the control output of the current regulator based on the machine model, and the PI controllers compensate the possible inaccuracies of the model to improve the performance and robustness of the complete control system. The machine current tracking error caused by parameter inaccuracy in the model-based controller is mathematically analyzed and utilized to dynamically compensate the estimated flux linkage to eliminate the steady-state error in current regulation. Stability analysis is also presented, and it can be seen that the regulation performance and robustness of the system are improved by the proposed hybrid controller. Simulation and experimental results consisting of a flywheel energy storage system validates the performance of the controller.
Keywords :
PI control; feedforward; machine control; reluctance generators; reluctance motors; robust control; uninterruptible power supplies; PI controllers; control system; current regulator; flux linkage estimation; flywheel-based uninterruptible power supplies; high-speed solid-rotor synchronous reluctance motor-generator; hybrid controller; machine current tracking error; machine model; model-based feedforward controller; proportional-integral feedback compensator; stability analysis; steady-state error; Flywheel; Model-Based Control; Synchronous Reluctance Motor; UPS; model-based control; synchronous reluctance motor; uninterruptible power supply (UPS);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2008.918583