Guerra K, Haro P, Gutiérrez R E, Gómez-Barea A
Chemical and Environmental Engineering Department. Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, Camino de los Descubrimientos s/n., Seville 41092, Spain.
Postgraduate Faculty, Universidad de las Américas Quito, Avenida de los Granados E12-41 y Colimes, Quito, Ecuador.
Data Brief. 2022 Mar 26;42:108095. doi: 10.1016/j.dib.2022.108095. eCollection 2022 Jun.
Energy and power system models have become necessary tools that provide challenges and technical and economic solutions for integrating high shares of Variable Renewable Energy. Models are focused on analysing strategies of power systems to achieve their decarbonisation targets. The data presented in this paper includes the model algorithm, inputs, equations, modelling assumptions, supplementary materials, and results of the simulations supporting the research article titled "Facing the high share of variable renewable energy in the power system: flexibility and stability requirements". The analysis is based on data from the system operator of one of the European Union member states (Spain). The developed model allows making projections and calculations to obtain the power generation of each technology, the international interconnections, inertia, emissions, system costs and flexibility requirements of new technologies. These data can be used for energy policy development or decision making on power capacity and the balancing needs of the future power system.
能源和电力系统模型已成为必要工具,为整合高比例可变可再生能源带来挑战并提供技术和经济解决方案。模型专注于分析电力系统实现脱碳目标的策略。本文呈现的数据包括模型算法、输入数据、方程式、建模假设、补充材料以及支持题为《面对电力系统中高比例可变可再生能源:灵活性和稳定性要求》的研究文章的模拟结果。分析基于欧盟成员国之一(西班牙)的系统运营商的数据。所开发的模型允许进行预测和计算,以获得每种技术的发电量、国际互联、惯性、排放、系统成本以及新技术的灵活性要求。这些数据可用于能源政策制定或关于电力容量及未来电力系统平衡需求的决策。