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《Power System Technology》 2013-01
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Grid-Connection Characteristics of Large-Scale Photovoltaic Power Station and Its Low-Carbon Operation and Control Technology

AI Xin,HAN Xiaonan,SUN Yingyun(State Key Laboratory for Alternate Electrical Power System with Renewable Energy Sources(North China Electric Power University),Changping District,Beijing 102206,China)  
The glasshouse effect due to over-consumption of fossil fuel becomes the focus of attention the world over,the power generation technologies utilizing renewable clean sources such as solar energy and so on are being vigorously promoted in China to make a contribution to low-carbon operation of power grids.Surely the grid-connection of large-scale photovoltaic(PV) power generation will be the main development trend in future,and it contributes to the development of low-carbon power grid to improve the efficiency of PV generation and increase the grid-connected capacity of PV generation station.In view of strong randomness of PV generation,a model of PV power station is built by Matlab/Simulink,and based on real environmental data the PV output characteristics of typical days in a year are attained and analyzed,and on this basis a low-carbon dispatching mode for large-scale PV generation station is given.On the other hand,along with increasingly increase of the capacity of PV generation stations,more negative impacts during the grid-connection of PV generation stations should be taken into account and solved while the standard of low-carbon operation must be ensured,therefore,more requirements to the grid-connected inverter due to these factors are put forward.For this reason,a multi-mode control strategy for inverters applied in large-scale PV generation station,which can implement the maximum power point tracking(MPPT) and integrates harmonics and reactive power compensation with active power control,is proposed,and the feasibility and advantages of the proposed control strategy are verified by modeling and simulation based on Matlab/Simulink.
【Fund】: 国家863高技术基金项目(2011AA05A301)~~
【CateGory Index】: TM615
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