Title :
Micro inverter with a front-end current-fed converter
Author :
Nayanasiri, D.R. ; Foo, Gilbert ; Maskell, D.L. ; Vilathgamuwa, D.M.
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
The reliability of micro inverters is an important factor as it would be necessary to reduce cost and maintenance of the small and medium scale distributed PV power conversion systems. Electrolytic capacitors and active power decouple circuits can be avoided in micro inverters with the use of a medium voltage DC-link. Such a DC-link based micro inverter is proposed with a front-end dual inductor current-fed push-pull converter. The primary side power switches of the front-end converter have reduced switching losses due to multi-resonant operation. In addition, the voltage and current stresses on the diodes of the secondary diode voltage doubler rectifier are reduced due to the presence of a series resonant circuit in the front-end converter. The operation of the proposed micro inverter is explained using an in-depth analysis of the switching characteristics of the power semiconductor devices. The theoretical analysis of the proposed micro inverter is validated using simulation results.
Keywords :
distributed power generation; invertors; photovoltaic power systems; power distribution reliability; power semiconductor switches; DC-link based micro inverter; current stresses; front-end dual inductor current-fed push-pull converter; medium scale distributed PV power conversion systems; medium voltage DC-link; micro inverters reliability; multiresonant operation; power semiconductor devices; primary side power switches; secondary diode voltage doubler rectifier; series resonant circuit; small distributed PV power conversion systems; switching losses; voltage stresses; Capacitors; Hafnium; Inverters; MOSFET; RLC circuits; Semiconductor diodes; Switches; Current-fed push-pull (CFPP) converter; multi-resonant operation; series resonant circuit; wide-band-gap devices; zero-voltage-switching;
Conference_Titel :
Information and Automation for Sustainability (ICIAfS), 2014 7th International Conference on
DOI :
10.1109/ICIAFS.2014.7069555