Title :
Fault-tolerant topology of a grid-connected PV inverter coupled by a Scott transformer
Author :
Mai Tuan Dat ; Wijnhoven, Thomas ; Driesen, Johan
Author_Institution :
ESAT - ELECTA, K.U. Leuven, Heverlee, Belgium
Abstract :
A grid-connected photovoltaic(PV) power plant is mainly based on power electronics equipments which are considered as the most vulnerable parts in a PV system. In order to increase the reliability of modular grid-connected PV panel, a solution by using a Scott transformer is presented to reduce the number of switches and to continuously operate the PV system in case of switch-failures of the power converter. The three-phase type PV inverter is analyzed in the normal and fault-operation. The simulation has shown that fault tolerance can be achieved with the proposed system configuration to give a redundancy of power switches in an Integrated power electronic module. Index Terms-Power converter, Scott transformer, redundant components, fault-tolerant, grid-connected inverter, grid-tie, reference frame, Clarke transformation.
Keywords :
fault tolerance; invertors; photovoltaic power systems; power electronics; power generation reliability; power grids; PV system; Scott transformer; fault tolerance; fault-tolerant topology; grid-connected PV inverter; grid-connected photovoltaic power plant; integrated power electronic module; modular grid-connected PV panel reliability; power converter; power electronics equipments; power switches; switch-failures case; system configuration; three-phase type PV inverter; Clarke transformation; Power converter; Scott transformer; fault-tolerant; grid-connected inverter; grid-tie; redundant components; reference frame;
Conference_Titel :
IPEC, 2012 Conference on Power & Energy
Conference_Location :
Ho Chi Minh City
DOI :
10.1109/ASSCC.2012.6523306