Title :
Grid to Standalone Transition Motion-Sensorless Dual-Inverter Control of PMSG With Asymmetrical Grid Voltage Sags and Harmonics Filtering
Author :
Fatu, Marius ; Blaabjerg, Frede ; Boldea, Ion
Author_Institution :
Continental Automotive Romania, Timisoara, Romania
Abstract :
This paper describes a variable-speed motion-sensorless control system for permanent-magnet synchronous generator (PMSG) connected to grid via back-to-back inverters for wind energy generation. The grid-side inverter control system employs proportional-integral (PI) current controllers with cross-coupling decoupling and line-voltage feedforward disturbance compensation. Also, a D-module filter is used to robustly extract the line voltage positive sequence followed by a phase-locked-loop (PLL) based observer to estimate the positive-sequence angle for control, including the case of asymmetric voltages and automatic seamless transfer method from grid connected to stand alone and vice versa. In stand-alone mode, a voltage control scheme with selective harmonic compensation is employed. The PMSG motion-sensorless control system uses an active power controller and a PLL-based observer to estimate the rotor position and speed without using the electromotive force (EMF) integration and initial rotor position. The paper investigates and validates the ride-through performance of this proposed system during asymmetric power grid-voltage sags, transition from grid connected to stand alone and vice versa and voltage harmonics compensation. While some of the aforementioned issues have been treated rather individually in previous conference publications of the authors, the present paper integrates them into a comprehensive control system of PMSG.
Keywords :
PI control; band-pass filters; electric current control; electric potential; feedforward; invertors; observers; permanent magnet generators; phase locked loops; power control; power grids; power supply quality; sensorless machine control; synchronous generators; voltage control; wind power plants; D-module filter; EMF integration; PI current controller; PLL-based observer; PMSG; active power controller; asymmetric power grid-voltage sags; automatic seamless transfer method; cross-coupling decoupling; electromotive force integration; grid-side inverter control system; harmonics filtering; line-voltage feedforward disturbance compensation; permanent-magnet synchronous generator; phase-locked-loop based observer; proportional-integral current controller; transition motion-sensorless dual-inverter control; variable-speed motion-sensorless control system; voltage control scheme; voltage harmonic compensation; wind energy generation; Band-pass filters; Harmonic analysis; Inverters; Phase locked loops; Power harmonic filters; Voltage control; Bandpass filters; fault tolerance; permanent-magnet synchronous generators (PMSGs); phase-locked loops (PLLs); sensorless control; stand alone; voltage harmonics compensation; wind power generation;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2013.2279883