Smart Grid Goes Flexible: Methods for Cost Reduction by Efficient Resource Utilization of Operating Equipment*

C. Süfke, M. Tophinke
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Abstract

The growing dynamic in energy transition by grid integration of flexible power generations and loads as well as novel operating equipment, must be considered as new challenges in terms of power grid planning and operation. Therefore, system operators must develop new tools and concepts in order to use all available technologies consciously and efficiently. In particular, this challenge addresses power grid operators as well as other system operators who have to face these new requirements in the near future, e.g., driven by sector coupling. The main contribution of this paper is the basic research for a holistic model that integrates and exploits flexibilities for efficient planning and operating smart grids. In contrast to normally used flexibilities, a definition of grid flexibility is introduced and a motivating example for grid flexibilities based on real-world datasets to underline the corresponding benefits, requirements and constraints is given.
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智能电网走向灵活:运行设备资源高效利用降低成本的方法*
柔性发电机组和负荷并网转换的动态变化以及新型运行设备的出现,是电网规划和运行的新挑战。因此,系统操作员必须开发新的工具和概念,以便有意识和有效地使用所有可用的技术。特别是,这一挑战解决了电网运营商以及在不久的将来必须面对这些新要求的其他系统运营商,例如,由扇区耦合驱动。本文的主要贡献是对集成和利用灵活性的整体模型进行了基础研究,以实现智能电网的高效规划和运行。与通常使用的灵活性相比,本文介绍了网格灵活性的定义,并给出了一个基于真实数据集的网格灵活性的激励示例,以强调相应的好处、要求和约束。
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