Title :
Design and implementation of a microinverter for solar PV rooftops
Author :
Sulong, Dome ; Jeraputra, Chuttchaval
Author_Institution :
Dept. of Electr. Eng., Mahidol Univ., Nakhon Pathom, Thailand
Abstract :
This paper presents design and implementation of a microinverter for solar PV rooftops. The proposed microinverter consists of a flyback inverter and a dc active filter that can operate independently in parallel. The flyback inverter, controlled in digital peak current mode, regulates the full-wave rectified sinusoidal current, later which is alternately inverted and injected into the grid. The dc active filter regulates the smooth current/power drawn from a PV module by using cascaded PI controllers. The proposed topology has several advantages: 1) eliminating a bulky electrolytic capacitor at the input filter stage, 2) using a long lifetime and reliable film capacitor, 3) efficiently handling flyback transformer leakage energy. The design and control of the proposed topology are presented and discussed in detail. A 100W/220V/50Hz prototype is developed and tested. The experimental results show that the microinverter is capable of regulating the sinusoidal current fed into the grid, actively filtering the dc current/power and achieving reasonably high energy conversion efficiency.
Keywords :
active filters; building integrated photovoltaics; direct energy conversion; electrolytic capacitors; invertors; power transformers; DC active filter; digital peak current mode; electrolytic capacitor; flyback inverter; flyback transformer; frequency 50 Hz; microinverter; power 100 W; solar PV rooftop; voltage 220 V; Active filters; Capacitors; Flyback transformers; Inverters; MOSFET; Topology; Voltage control; active filter; flyback; microinverter; photovoltaic;
Conference_Titel :
Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2015 12th International Conference on
Conference_Location :
Hua Hin
DOI :
10.1109/ECTICon.2015.7206953