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Highly resolved optimal renewable allocation planning in power systems under consideration of dynamic grid topology

机译:考虑动态电网拓扑的电力系统高度可再生最优分配规划

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The system integration of an increasing amount of electricity generation from decentralised renewable energy sources (RES-E) is a major challenge for the transition of the European power system. The feed-in profiles and the potential of RES-E vary along the geographical and temporal dimension and are also subject to technological choices and changes. To support power system planning in the context of RES-E expansion and allocation planning required for meeting RES-E targets, analyses are needed assessing where and which RES-E capacities are likely to be expanded. This requires models that are able to consider the power grid capacity and topology including their changes over time. We therefore developed a model that meets these requirements and considers the assignment of RES-E potentials to grid nodes as variable. This is a major advancement in comparison to existing approaches based on a fixed and pre-defined assignment of RES-E potentials to a node. While our model is generic and includes data for all of Europe, we demonstrate the model in the context of a case study in the Republic of Ireland. We find wind onshore to be the dominating RES-E technology from a cost-efficient perspective. Since spatial wind onshore potentials are highest in the West and North of the country, this leads to a high capacity concentration in these areas. Should policy makers wish to diversify the RES-E portfolio, we find that a diversification mainly based on bioenergy and wind offshore is achievable at a moderate cost increase. Including solar photovoltaics into the portfolio, particularly rooftop installations, however, leads to a significant cost increase but also to a more scattered capacity installation over the country. (C) 2017 Elsevier Ltd. All rights reserved.
机译:分散式可再生能源(RES-E)不断增加的发电量的系统集成是欧洲电力系统转型的主要挑战。 RES-E的馈送资料和潜力随着地理和时间维度的变化而变化,并且还受技术选择和变化的影响。为了在RES-E扩展的背景下支持电力系统规划以及实现RES-E目标所需的分配规划,需要进行分析,以评估可能在何处以及哪些RES-E能力进行扩展。这要求模型能够考虑电网容量和拓扑,包括其随时间的变化。因此,我们开发了一个满足这些要求的模型,并将RES-E电位对网格节点的分配视为变量。与基于对节点的RES-E电位的固定和预定义分配的现有方法相比,这是一个重大进步。虽然我们的模型是通用的,并且包含整个欧洲的数据,但我们在爱尔兰共和国的案例研究中演示了该模型。从成本效益的角度来看,我们发现陆上风电是主导的RES-E技术。由于该国西部和北部的空间陆上风能潜力最高,因此导致这些地区的风能集中度很高。如果政策制定者希望使RES-E组合多样化,我们发现以适度的成本增加可以实现主要基于生物能源和海上风能的多样化。但是,将太阳能光伏电池纳入产品组合,尤其是屋顶安装,不仅会导致成本显着增加,而且会导致全国各地的容量安装更加分散。 (C)2017 Elsevier Ltd.保留所有权利。

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