The EU Research Project PLANET

Andrea Schröder, Christoph Kahlen, M. Martino, AntonisPapanikolaou
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引用次数: 1

Abstract

Renewable energy sources offer unprecedented opportunities to reduce greenhouse gas emissions. But some challenges remain to be solved before their full benefits can be reaped. The main one relates to the intermittency of their electricity supply which can lead to grid problems such as congestion and imbalance between generation and demand. Energy conversion and storage has been touted as a very promising solution to all aforementioned issues. PLANET will develop a holistic decision support system for the optimal orchestration of the different energy networks for aggregators and balance responsible parties, policy makers and network operators. It will aid them to leverage innovative energy conversion in alternative carriers and storage technologies in order to explore, identify, evaluate and quantitatively assess optimal grid planning and manage ment strategies for future energy scenarios targetting full energy system decarboniza - tion. Moreover, an analysis of the possible synergies between electricity, gas and heat networks will be carried out by creating simulation models for the integration between energy networks and conversion/storage technologies, for example power-to-gas, power-to-heat and virtual thermal energy storage. Application of the developed tools in two different test cases in Italy and France will showcase their benefits and reveal potential grid stability issues and effective countermeasures.
欧盟星球研究项目
可再生能源为减少温室气体排放提供了前所未有的机会。但在充分发挥其效益之前,仍有一些挑战有待解决。主要问题是电力供应的间歇性,这可能导致电网问题,如拥堵和发电与需求之间的不平衡。能量转换和存储被吹捧为解决上述所有问题的一个非常有前途的解决方案。PLANET将开发一个全面的决策支持系统,为集成商提供不同能源网络的最佳编排,并平衡责任方、政策制定者和网络运营商。它将帮助他们利用替代载体和存储技术中的创新能源转换,以便探索,识别,评估和定量评估未来能源情景的最佳电网规划和管理策略,目标是全能源系统脱碳。此外,将对电力、天然气和热网之间可能的协同作用进行分析,方法是为能源网与转换/储存技术之间的整合建立模拟模型,例如电力制气、电力制热和虚拟热能储存。在意大利和法国的两个不同的测试案例中应用开发的工具将展示它们的好处,并揭示潜在的电网稳定性问题和有效的对策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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