可再生能源高渗透耦合能源系统的频率控制

P. Dubucq, G. Ackermann
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引用次数: 6

摘要

由于可再生能源的波动性,将可再生能源整合到现有的能源供应系统中是非常有挑战性的。但是,通过限制在能源生产中使用化石燃料的比例,可以大大减少发电对环境的负面影响。因此,欧洲大陆同步电网(UCTE)的风能和光伏发电容量正在增加。因此,欧盟和德国都为可再生能源的未来增长设定了雄心勃勃的目标。本文的目的是展示可再生能源发电对传统电厂发电调度的影响,同时考虑到区域供热网中热电联产(CHP)电厂的必须运行能力。此外,本文的结果还给出了用RE转炉取代传统装置所造成的旋转质量减少的估计。随后,将讨论区域供热网储能和风惯性控制等对策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency control in coupled energy systems with high penetration of renewable energies
The integration of Renewable Energies (RE) into the existing energy supply system has proven to very challenging due to the fluctuating nature of RE ressources. However, the negative environmental impacts of power generation can be significantly reduced by limiting the share of fossil fuels used in energy production. As a result wind and photovoltaic capacity in the synchronous grid of continental Europe (UCTE) is increasing. Thus both the European Union and Germany have set ambitious goals for the future growth of RE. The objective of this paper is to show the impacts of RE generation on the dispatch of generation from conventional plants while taking into account must-run capacities of combined heat and power (CHP) plants in district heating grids. Furthermore, the presented results give an estimation for the decrease of rotating masses that are caused by the replacement of conventional plants by RE converters. Subsequently, counteractive measures such as energy storage in the district heating grid and wind inertia control will be discussed.
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