Title :
A buck-boost based DC/AC converter for residential PV applications
Author :
Testa, A. ; De Caro, S. ; Scimone, T. ; Panarello, S.
Author_Institution :
DCIIM, Univ. of Messina, Messina, Italy
Abstract :
The single stage architecture is often preferred to realize grid connected Photo-Voltaic generators for residential applications. In fact,by halving the power processing steps, the power losses can be considerably reduced if compared with those of a two stage configuration. However, single stage power conditioners are generally unable to boost the voltage of the PV modules, therefore, they feature a narrower input voltage range. A new approach to design a power conditioner for grid connected PV plants for residential applications is presented in this paper. It is based on the series connection between a buck-boost converter,and the PV array. According to such an approach, the buck-boost converter processes only a fraction of the inverter input power, while always operating in conditions of high efficiency. Experimental tests show that the proposed solution features an efficiency level very close to that of a single stage power conditioner, but owns a voltage boosting capability, similar to that of a two stage configuration.
Keywords :
AC generators; DC-AC power convertors; distributed power generation; photovoltaic power systems; power grids; PV array; PV modules; buck-boost-based DC-AC converter; efficiency level; grid-connected photovoltaic generators; power loss reduction; power processing steps; residential PV applications; single-stage architecture; single-stage power conditioners; two-stage configuration; voltage boosting capability; Bridge circuits; Choppers (circuits); DC-DC power converters; Inductors; Inverters; Power generation; Topology; DC-AC power converters; Photovoltaic systems; Power conversion;
Conference_Titel :
Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), 2012 International Symposium on
Conference_Location :
Sorrento
Print_ISBN :
978-1-4673-1299-8
DOI :
10.1109/SPEEDAM.2012.6264606