Title :
A Minimal Harmonic Controller for a STATCOM
Author :
Chen, Ben-Sheng ; Hsu, Yuan-Yih
Author_Institution :
Delta Electron. Inc, Taipei
Abstract :
In this paper, a novel controller with fixed modulation index (MI) and variable dc capacitor voltage reference to minimize voltage and current harmonics is presented for a distribution static synchronous compensator (STATCOM). The STATCOM with the proposed controller consists of a three-phase voltage-sourced inverter and a dc capacitor and is used to provide reactive power compensation and regulate ac system bus voltage with minimum harmonics. A systematic design procedure based on pole-zero cancellation, root locus method, and pole assignment method has been developed to determine proper parameters for the current regulator, the dc voltage controller, and the ac voltage controller of the STATCOM. With the proposed STATCOM controller, harmonic distortions in the inverter output current and voltage can be reduced since the MI is held constant at unity in steady state. In addition, a fast adjustment in the STATCOM output reactive power is achieved to regulate the ac bus voltage through the adjustment of the dc voltage reference during the transient period. Simulation and experimental results for the steady-state operating condition and transient operating conditions for the system subjected to a reactive current reference step change, a three-phase line to neutral fault, and a step load change are presented to demonstrate the effectiveness of the proposed controller.
Keywords :
harmonic distortion; invertors; reactive power control; static VAr compensators; STATCOM; ac voltage controller; current regulator; dc voltage controller; distribution static synchronous compensator; fixed modulation index; minimal harmonic controller; neutral fault; pole assignment; pole-zero cancellation; reactive power compensation; reduced harmonic distortions; regulated ac system bus voltage; root locus method; steady-state operating condition; step load change; three-phase line; three-phase voltage-sourced inverter; transient operating conditions; variable dc capacitor voltage reference; Automatic voltage control; Capacitors; Control systems; Inverters; Modulation; Power system harmonics; Reactive power control; Steady-state; System buses; Voltage control; Fixed modulation index; Fixed modulation index (MI); Harmonics; Pole assignment technique; Root locus method; STATCOM; Variable DC voltage reference; harmonics; pole assignment technique; root locus method; static synchronous compensator (STATCOM); variable dc voltage reference;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2007.896266