Title :
Three-level voltage-source inverter for shunt active filter
Author :
Lin, B.-R. ; Yang, T.Y.
Author_Institution :
Dept. of Electr. Eng., Nat. Yunlin Univ. of Sci. & Technol., Taiwan
Abstract :
An active power filter or power-line conditioner is an important way to compensate reactive power and suppress harmonics drawn from nonlinear loads. A single-phase active filter is presented to operate as a controlled current source to compensate the load harmonics and generate a sinusoidal line current from the AC source. The adopted single-phase voltage-source inverter is based on four active switches and two capacitors to achieve three-level pulsewidth modulation. The circuit topology of the adopted inverter has fewer power semiconductors compared with the single-phase neutral-point-clamped inverter and flying capacitor inverter. To maintain the DC-link voltage constant and compensate the power losses of inverter, a proportional-integral voltage controller is used in the outer control loop. A carrier-based current controller is adopted in the inner control loop to track the line current command in phase with the mains voltage. The effectiveness of the proposed control algorithm is verified by computer simulation and experimental results.
Keywords :
PI control; PWM invertors; active filters; digital simulation; electric current control; power capacitors; power conversion harmonics; power harmonic filters; power semiconductor switches; reactive power control; switching convertors; voltage control; AC source; DC-link voltage; active switches; capacitors; carrier-based current controller; circuit topology; computer simulation; current source control; flying capacitor inverter; harmonics suppression; load harmonic compensation; nonlinear loads; power loss compensation; power semiconductors; power-line conditioner; proportional-integral voltage controller; reactive power compensation; shunt active filter; single-phase active filter; single-phase neutral-point-clamped inverter; single-phase voltage-source inverter; sinusoidal line current; three-level pulsewidth modulation; three-level voltage-source inverter;
Journal_Title :
Electric Power Applications, IEE Proceedings -
DOI :
10.1049/ip-epa:20040587