Title :
Modes of Operation and System-Level Control of Single-Phase Bidirectional PWM Converter for Microgrid Systems
Author :
Dong, Dong ; Thacker, Timothy ; Cvetkovic, Igor ; Burgos, Rolando ; Boroyevich, Dushan ; Wang, Fred ; Skutt, Glenn
Author_Institution :
Center for Power Electron. Syst., Virginia Tech, Blacksburg, VA, USA
fDate :
3/1/2012 12:00:00 AM
Abstract :
Robust system control design and seamless transition between various modes of operation are paramount for multifunctional converters in microgrid systems. This paper proposes a control system for single-phase bidirectional PWM converters for residential power level microgrid systems which is robust and can tolerate transitions between the different modes of operation. This is achieved by means of a common inner ac current-loop. Each of the operating modes has an individually designed outer loop performing the corresponding regulation tasks, most commonly including the ac voltage and the dc voltage regulation. A modified , phase-locked loop (PLL) system is used for system-level operation with both small steady-state error and fast response; and a novel islanding detection algorithm based on PLL stability is proposed to facilitate the transition between grid-connected mode and stand-alone mode. Finally, a frequency-response based design procedure for the proposed control system is presented in detail for all operating modes, and its performance is verified experimentally using a DSP-controlled 6 kW 120 V rms (ac)/ 300 V (dc) laboratory converter prototype.
Keywords :
PWM power convertors; digital signal processing chips; distributed power generation; phase locked loops; power generation control; robust control; AC current-loop; AC voltage regulation; DC voltage regulation; DSP; PLL stability; frequency-response; laboratory converter prototype; microgrid systems; phase-locked loop system; power 6 kW; robust system control design; seamless transition; single-phase bidirectional PWM converter; system-level control; voltage 120 V; voltage 300 V; Frequency control; Inverters; Phase locked loops; Resonant frequency; Transfer functions; Voltage control; Islanding detection; PLL; microgrid system; multi-function converter; single-phase;
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2011.2167352