Zhou Xiaoqian: Smart grid will promote energy structure adjustment

Zhou Xiaoqian, Chairman of the China Electric Power Development Promotion Association, said at the 2010 China Power Grid Dispatch Intelligentization Development Summit that the development of smart grids will save energy, reduce emissions, increase energy efficiency, promote the rapid development of renewable energy, and realize a wider range of energy resources. Balancing and promoting the adjustment of energy structure and the transformation of development methods all have important significance. It can be predicted that in the near future, the development of smart grids will surely rise to a national strategic position.

According to Zhou Xiaoqian, in the development of smart grids, the State Grid Corporation of China has conducted overall planning of dispatching intelligence, and piloted intelligent dispatching systems in Central China Power Grid to develop a new generation of integrated basic platforms and grid operation monitoring and analysis. Technical support system. In the mode of dispatch, we also explored the mode of integration of regulation and control. In addition, in September this year, the Ministry of Science and Technology clearly stated that during the 12th Five-Year Plan period, 1.05 billion yuan will be invested in major research in smart grids.

Nowadays, from the national level to the level of power generation, power grids, manufacturing companies, and even to the user level of electric vehicles, they all show great enthusiasm for the smart grid, and plan, formulate, research projects, generate power, and transmit electricity in the smart grid. The demonstration projects have been carried out in various links such as power transformation, dispatching, and power supply.

Zhou Xiaoqian thinks that at present, China’s UHV AC and DC transmission lines have been successfully built and put into operation. Large-scale hydropower bases, thermal power bases, and wind power bases have been connected to power systems, and long-distance, large-capacity transmissions and other complex grid structures and operating modes have been In front of them, these have brought severe challenges to the safe operation of the power grid. In addition, the diversification of power generation main bodies, the large-scale access of intermittent power supplies and distributed power supplies, and the rapid development of electric vehicle charging stations all place new demands on the intelligentization of power grid dispatching automation systems and their technical support systems. Therefore, the development of a smart grid is not only an extremely complicated system project with huge investment, but also an innovation and exploration of the system and mechanism. It requires constant in-depth research, exploration and practice.

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