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The influence of the spatiotemporal complementarities of countrywide dispersed wind power on the China electricity system

机译:全国各地互补性对中国电力系统的时空互补性的影响

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China has begun to build eight 10-million-kilowatt wind power bases and the wind power can reach 230 GW of installed capacity by 2020. Such large-scale integration of wind power will have significant impacts on the power system, such as increasingly outstanding difficulties of peak load regulating, the bottleneck of grid integrating capability, and so on. But keeping view of geographically dispersed wind energy resources in a larger scope or even countrywide scope may be an effective way to solve those above problems. In this case, due to the spatiotemporal complementarities of dispersed wind generation, electricity power from wind energy changes slowly, thus to benefit the safe and economic operation of the power system. Hence, based on real wind data which is provided by the China Meteorological Administration (CMA), this paper investigates the impacts of the complementary effect of countrywide dispersed wind energy on the power system. Both short term and long term effects of wind power on the power system are investigated. The results show that the countrywide complementary effect of dispersed wind energy resources could bring various benefits to operation of China electricity system.
机译:中国已开始建造八百万千瓦风电站,风力电力可以达到2020年的装机容量。这种风电的大规模集成将对电力系统产生重大影响,如越来越突出的困难峰值负荷调节,网格集成能力的瓶颈等。但是,在更大的范围甚至全国范围内,对地理上分散的风能资源保持看法可能是解决上述问题的有效方法。在这种情况下,由于分散风产生的时空互补性,来自风能的电力缓慢变化,从而有利于电力系统的安全和经济运行。因此,基于中国气象管理(CMA)提供的真风数据,本文调查了全国各地互补效果对电力系统的影响。研究了风电对电力系统的短期和长期影响。结果表明,各种各样的分散风能资源的互补效果可以为中国电力系统运营带来各种益处。

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