Morch Andrei, Migliavacca Gianluigi, Egorov Aleksandr, Ergun Hakan, Siface Dario, Lattanzio Giorgia, Sperstad Iver Bakken
Energy Systems, SINTEF Energi AS, Trondheim, Trøndelag, NO-7034, Norway.
Energy Systems Development, Ricerca sul Sistema Energetico - RSE S.p.A., Milano, IT-20134, Italy.
Open Res Eur. 2024 Apr 29;3:149. doi: 10.12688/openreseurope.15873.3. eCollection 2023.
The FlexPlan Horizon2020 project aimed at establishing a new grid planning methodology which considers the opportunity to introduce new storage and flexibility resources in electricity transmission and distribution grids as an alternative to building new grid elements, in accordance with the intentions of the European Commission regulatory package "Clean Energy for all Europeans". FlexPlan creates a new innovative grid planning tool which is intended to go beyond the state of the art of planning methodologies by including the following innovative features: assessment of best planning strategy by analysing in one shot a high number of candidate expansion options provided by a pre-processor tool, simultaneous mid- and long-term planning assessment over three grid years (2030-2040-2050), incorporation of full range of cost benefit analysis criteria into the target function, integrated transmission distribution planning, embedded environmental analysis (air quality, carbon footprint, landscape constraints), probabilistic contingency methodologies in replacement of the traditional N-1 criterion, application of numerical decomposition techniques to reduce calculation efforts and analysis of variability of yearly RES and load time series through a Monte Carlo process. Six regional cases covering nearly the whole European continent are developed in order to cast a view on grid planning in Europe till 2050. The final step in FlexPlan was formulating guidelines for regulators and planning offices of system operators, by indicating to what extent system flexibility can contribute to reduce overall system costs (operational and investment) yet maintaining current system security levels and which regulatory provisions could foster such process. This paper focuses on the regulatory issues, which were uncovered during the initiation phase and of the project and refined in throughout six regional cases. In order to substantiate this, the paper explains in brief the developed and applied FlexPlan methodology and its testing in six regional cases.
“地平线2020”灵活规划项目旨在建立一种新的电网规划方法,该方法根据欧盟委员会“为全体欧洲人提供清洁能源”监管方案的意图,考虑在输配电网络中引入新的储能和灵活性资源的机会,以此替代建设新的电网元件。灵活规划创建了一种全新的创新型电网规划工具,旨在超越现有规划方法的水平,其具有以下创新特性:通过一次性分析预处理器工具提供的大量候选扩展方案来评估最佳规划策略;对三个电网年份(2030 - 2040 - 2050年)进行中期和长期规划同步评估;将全方位的成本效益分析标准纳入目标函数;进行输配电综合规划;嵌入环境分析(空气质量、碳足迹、景观限制);采用概率性故障分析方法替代传统的N - 1准则;应用数值分解技术减少计算量;通过蒙特卡洛过程分析年度可再生能源和负荷时间序列的可变性。为了展望到2050年欧洲的电网规划情况,开展了六个覆盖几乎整个欧洲大陆的区域案例。灵活规划的最后一步是为监管机构和系统运营商的规划部门制定指导方针,指明系统灵活性在何种程度上有助于降低系统总体成本(运营和投资),同时维持当前系统安全水平,以及哪些监管规定能够促进这一过程。本文聚焦于在项目启动阶段发现并在六个区域案例中不断完善的监管问题。为了证实这一点,本文简要解释了所开发和应用的灵活规划方法及其在六个区域案例中的测试情况。