DocumentCode :
150539
Title :
Stationary frame control strategy for voltage source inverter under unbalanced and distorted grid voltage
Author :
Yipeng Song ; Heng Nian
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
fYear :
2014
fDate :
14-18 Sept. 2014
Firstpage :
1167
Lastpage :
1173
Abstract :
The paper presents the stationary frame control strategy for voltage source inverter (VSI) under unbalanced and distorted grid voltage, which aims at the two alternative control targets, namely 1) balanced and sinusoidal three-phase current; 2) the smooth active and reactive power injected into the power grid. Unlike the conventional method, the proposed strategy requires no complicated and time-consuming grid voltage negative and harmonic components extraction, and no control reference calculation. Moreover, the proposed strategy is implemented in stationary frame, thus the grid voltage fundamental component phase angle by phase lock loop (PLL) can be avoided. Therefore, the control strategy robustness against grid voltage unbalance and distortion disturbance can be essentially guaranteed. The improved reduced order generalized integrator (ROGI) regulators tuned respectively at +50Hz, -50Hz, -250Hz and +350Hz are employed in stationary frame to independently regulate the output three-phase current +50Hz (positive), -50Hz (negative), -250Hz (5th harmonic) and +350Hz (7th harmonic) components. While the ROGI regulators tuned at +100Hz, and vector PI (VPI) regulators tuned at 300Hz are adopted to restrain the VSI active and reactive power pulsation. The availability of the proposed control strategy is validated by the MATLAB/Simulink simulation result on the VSI simulation model.
Keywords :
PI control; electric current control; harmonic distortion; invertors; power grids; reactive power control; voltage control; Matlab-Simulink simulation; PLL; ROGI regulators; VSI active power pulsation; VSI simulation model; balanced three-phase current control; distorted grid voltage; distortion disturbance; frequency -250 Hz; frequency -50 Hz; frequency 100 Hz; frequency 350 Hz; frequency 50 Hz; grid voltage fundamental component phase angle; grid voltage negative component extraction; harmonic components extraction; output three-phase current regulation; phase lock loop; power grid; reactive power; reactive power pulsation; reduced order generalized integrator; sinusoidal three-phase current control; smooth active power; stationary frame control strategy; unbalanced grid voltage; vector PI regulators; voltage source inverter; Harmonic analysis; Power generation; Power system harmonics; Reactive power; Regulators; Resonant frequency; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location :
Pittsburgh, PA
Type :
conf
DOI :
10.1109/ECCE.2014.6953532
Filename :
6953532
Link To Document :
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