Abstract

Due to the environmental and transportation problems caused by conventional diesel power supply of the Antarctic Zhongshan Station,the wind-solar complementary power generation technology can not only guarantee the power supply demand but also protected the environment of the polar regions.Combined with the meteorological data of the Antarctic Zhongshan station and the data of the load electricity consumption,the system energy matching calculation is carried out,which shows that the wind-solar complementary power generation system can meet the load demand of the Antarctic Zhongshan station.Aiming at the extreme polar day-night phenomena and the perennial low-temperature environment,the energy management scheme in Antarctic Zhongshan station are proposed and a Maximum Power Point Tracking control strategy simulation experiment is carried out,the simulation results verify the feasibility of the control strategy.

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