Title :
Design and development of movable testing platform for photovoltaic power station connected to low-voltage distribution grid
Author :
Zhang, Junjun ; Li, Hongtao ; Huang, Jingsheng ; Liu, Meiyin ; Niu, Chenhui
Author_Institution :
State Grid Electr. Power Res. Inst. (SGEPRI), Nanjing, China
Abstract :
State grid corporation of China (SGCC) has issued “Technical rule for PV power station connected to grid (trial)” in July 2009, while claimed that grid-connected testing would be accepted and adopted if the PV power station connecting to the grid. According to the technical rule for PV power station connected to grid, a type of movable field testing platform for low voltage distribution grid-connected PV power station has been developed. This platform can complete the field testing for PV power station, including voltage/frequency response features, anti-islanding protection properties, power output features, power quality indicators and the other general performance indicators. Considering the developing feature of small-scale PV station and traffic condition in China, the platform has been designed for anti-seismic, anti-noise, anti-heat, anti-fire, anti-collision, anti-static and anti-electromagnetic interference, reaching to IP65 protection level. This platform has tested one PV power station, depending on the testing results from the platform testing, then all the anticipatory testing contents could be accomplished.
Keywords :
distributed power generation; photovoltaic power systems; power generation protection; power grids; power supply quality; IP65 protection level; PV power station; antielectromagnetic interference; antiislanding protection property; field testing; grid-connected testing; low-voltage distribution grid; movable testing platform; photovoltaic power station; power quality indicators; voltage-frequency response; Control systems; Monitoring; Oscilloscopes; Power measurement; Testing; Voltage measurement; Anti-islanding protection; Grid-connected testing; PV power station; Power out features; Power quality; Voltage/Frequency response;
Conference_Titel :
Materials for Renewable Energy & Environment (ICMREE), 2011 International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-61284-749-8
DOI :
10.1109/ICMREE.2011.5930782