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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Decompositions of injection patterns for nodal flow allocation in renewable electricity networks
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Decompositions of injection patterns for nodal flow allocation in renewable electricity networks

机译:可再生电网节点流动分配注射模式的分解

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摘要

The large-scale integration of fluctuating renewable power generation represents a challenge to the technical and economical design of a sustainable future electricity system. In this context, the increasing significance of long-range power transmission calls for innovative methods to understand the emerging complex flow patterns and to integrate price signals about the respective infrastructure needs into the energy market design. We introduce a decomposition method of injection patterns. Contrary to standard flow tracing approaches, it provides nodal allocations of link flows and costs in electricity networks by decomposing the network injection pattern into market-inspired elementary import/export building blocks. We apply the new approach to a simplified data-driven model of a European electricity grid with a high share of renewable wind and solar power generation.
机译:波动可再生能源发电的大规模集成对可持续未来电力系统的技术和经济设计来说是挑战。 在这种情况下,远程电力传输的越来越重要的意义呼吁进行创新方法来了解新兴复杂的流量模式,并将关于各个基础设施需求的价格信号集成到能源市场设计中。 我们介绍了一种注射模式的分解方法。 与标准流动跟踪方法相反,它通过将网络注入模式分解为市场启发的基本进口/出口构建块,提供链路流量和电力网络成本的节点分配。 我们将新方法应用于欧洲电网的简化数据驱动模型,具有高度可再生风和太阳能发电。

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