Time reconciliation and space agregation to shed light on the plausibility of long-term low carbon pathways for power systems

N. Maizi, Vincent Krakowski, E. Assoumou, V. Mazauric, Xiang Li
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引用次数: 2

Abstract

To address the abysmal lack of efficiency of the electrical system (73% of losses, 45% of worldwide CO2 emissions), an energy-efficient description of electromagnetism lying on a reversible interpretation of the Faraday's law is described. This framework appears suitable for the space-consolidation and time-reconciliation of all the scales involved in the power management of the electromagnetic energy. A simplified description of the grid based on the Kuramoto model also recently proved to be suitable for assessing the stability of the synchronous state of a power system. Combining both frameworks, a coherent approach for long-term power systems analysis is proposed here and demonstrated in the case of the French Reunion island.
时间调和和空间聚合揭示了电力系统长期低碳路径的可行性
为了解决电力系统严重缺乏效率的问题(73%的损耗,45%的全球二氧化碳排放),本文描述了一种基于法拉第定律可逆解释的电磁节能描述。该框架似乎适合于电磁能电源管理中涉及的所有尺度的空间整合和时间协调。基于Kuramoto模型的电网简化描述最近也被证明适用于评估电力系统同步状态的稳定性。结合这两个框架,本文提出了一种长期电力系统分析的连贯方法,并以法属留尼汪岛为例进行了演示。
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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