Title :
Resonant–Repetitive Combined Control for Stand-Alone Power Supply Units
Author :
Lidozzi, Alessandro ; Chao Ji ; Solero, Luca ; Zanchetta, Pericle ; Crescimbini, Fabio
Author_Institution :
Dept. of Eng., Roma Tre Univ., Rome, Italy
Abstract :
This paper investigates a combined resonant-repetitive (RR) control structure for a three-phase four-leg dc/ac converter power supply. The RR control configuration is composed by a resonant controller tuned at the system fundamental frequency working in conjunction with a plug-in-type repetitive controller. The resonant part of the control scheme is used to assure prompt tracking of the inverter output voltage and to achieve as fast as possible system response to load variations; to this purpose, it is tuned at the fundamental frequency. At the same time, the resonant controller is able to stabilize the system without the necessity of any further additional controller; the repetitive part of the scheme is implemented for the fine regulation at the system harmonic frequencies. The proposed control configuration is used to regulate the power supply output voltage, providing very good tracking of the output voltage reference even in the presence of a nonlinear load. Experimental validation from a 40-kVA converter prototype is presented to validate the operation of the proposed converter and control.
Keywords :
DC-AC power convertors; resonant power convertors; voltage control; apparent power 40 kVA; combined resonant-repetitive control structure; inverter output voltage; nonlinear load; plug-in-type repetitive controller; power supply output voltage; resonant controller; stand-alone power supply units; system fundamental frequency; system harmonic frequencies; three-phase four-leg dc-ac converter power supply; Control systems; Harmonic analysis; Inverters; Resonant frequency; Topology; Transfer functions; Voltage measurement; DC-AC power converters; DC/AC power converters; Distributed power generation; distributed power generation; harmonic distortion; repetitive control; repetitive control (RC); resonant control; resonant control (RSC); unbalanced loads;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2015.2458960