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The Pan-European reference grid developed in ELECTRA for deriving innovative observability concepts in the Web-of-Cells framework

机译:在ELECTRA中开发的泛欧参考网格,用于在“单元网络”框架中推导创新的可观察性概念

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In the ELECTRA EU project, an innovative approach for frequency and voltage control is investigated, with reference to future power system scenarios characterized by massive amounts of distributed energy resources. A control architecture based on dividing the power system into a web of subsystems, the so-called cells, is proposed. Cells are individual control entities but also need to be coordinated together at system-wide level, in order to ensure secure and reliable overall operation (at Pan-European level). Task 5.4 in the ELECTRA project focuses on deriving novel observability concepts at system-wide scale. The methodology proposed in the task analyzes the system performance by investigating typical phenomena peculiar to each stability type and by developing observables necessary for the novel Web-of-Cells based control methods to operate properly at cell- and inter-cell level. Crucial aspects of angle, frequency and voltage stability are considered, according to the stability classification by CIGRÉ. In order to carry out the evaluations, a suitable test multi-cell grid model is developed. The paper aims at describing this reference model and at presenting the approach used in the task for assessing system stability in the developed WoC framework.
机译:在ELECTRA EU项目中,针对频率和电压控制的创新方法进行了研究,并参考了未来以大量分布式能源为特征的电力系统方案。提出了一种基于将电力系统划分为子系统网络(所谓的单元)的控制体系结构。单元是单独的控制实体,但也需要在系统范围内进行协调,以确保安全可靠的整体操作(在泛欧级别)。 ELECTRA项目中的任务5.4重点在于在系统范围内推导新颖的可观察性概念。任务中提出的方法论通过研究每种稳定类型所特有的典型现象,并开发出基于新颖的基于单元格的控制方法以在单元间和单元间级别正常运行所必需的可观察物,从而分析了系统性能。根据CIGRÉ的稳定性分类,考虑了角度,频率和电压稳定性的关键方面。为了进行评估,开发了合适​​的测试多单元网格模型。本文旨在描述此参考模型,并提出用于在已开发的WoC框架中评估系统稳定性的任务中使用的方法。

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