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Energy storage and DSM opportunities in the future European power system

机译:未来欧洲电力系统中的储能和DSM机会

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At present, European countries are seeking ways to reduce carbon emissions. To achieve this, they have set ambitious emissions reduction goals. Thus, in this paper, a novel strategic planning methodology is used in order to determine the most appropriate power system for Europe by the year 2050. The planning methodology jointly optimizes generation and transmission expansion alternatives considering renewable energy, energy storage and demand-side management, in order to minimize total costs. Technical and environmental aspects are considered by optimization model constraints. In this work, demand-side management is seen as an option to test the power system design under the assumption that a certain percentage of the load can be shifted. Moreover, sensitivity analyses are performed in order to evaluate the impact of different investment costs of storage technologies. Results show how different flexible demand levels, as well as different investment costs of storage technologies, technically and economically affects the future European power system.
机译:目前,欧洲国家正在寻求减少碳排放的方法。为此,他们制定了雄心勃勃的减排目标。因此,在本文中,为了确定到2050年欧洲最合适的电力系统,使用了一种新颖的战略规划方法。该规划方法结合可再生能源,能源存储和需求侧管理共同优化发电和输电扩展方案,以便将总成本降至最低。优化模型约束考虑了技术和环境方面。在这项工作中,在一定比例的负载可以转移的假设下,需求侧管理被视为测试电力系统设计的一种选择。此外,执行敏感性分析是为了评估存储技术的不同投资成本的影响。结果表明,不同的灵活需求水平以及不同的存储技术投资成本在技术和经济上如何影响未来的欧洲电力系统。

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