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Effects of Wind Power Technology Development on Large-scale VRE Generation Variability

机译:风电技术发展对大型VRE发电变异性的影响

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As variable renewable energy (VRE) shares are growing around the world, power systems are becoming more weather dependent. The weather driven variability in VRE generation can cause challenges to the operation and planning of power systems. This paper investigates how the expected technology development of wind power affects VRE generation variability over a large geographical area. A case study of Northern Europe is presented, where a mixture of offshore wind, onshore wind and solar photovoltaic generation is considered. Different scenarios with a doubling of today’s annual VRE energy generation is modelled. The results show that modern wind turbine technology can significantly decrease the variability in aggregate VRE generation. When considering also an optimal mixture of different VRE sources, standard deviation of the aggregate VRE generation is estimated to be 31 % lower compared to simply doubling existing installations.
机译:随着全球可变可再生能源(VRE)份额的增长,电力系统变得越来越依赖天气。 VRE生成中受天气驱动的可变性会给电力系统的运行和规划带来挑战。本文研究了预期的风力发电技术发展如何在较大的地理区域内影响VRE发电的可变性。提出了一个北欧案例研究,其中考虑了海上风能,陆上风能和太阳能光伏发电的混合。模拟了各种情景,将当今的VRE年度发电量翻了一番。结果表明,现代风力涡轮机技术可以显着降低集合VRE生成的可变性。当还考虑不同VRE来源的最佳混合时,与仅使现有安装增加一倍相比,总VRE产生的标准偏差估计要低31%。

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