使用网格分析仪开发测试网格的数字孪生系统

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Derk Gonschor;Jonas Steffen;Juan Alvaro Montoya Perez;Christian Bendfeld;Detlef Naundorf;Philipp Kost;Christian Aigner;Florian Füllgraf;Ron Brandl;Marco Jung
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引用次数: 0

摘要

近期能源行业的转型给供应安全、效率和可靠性等领域带来了新的挑战。特别是分散式发电厂的增加,导致能源系统更加复杂,复杂性不断增加。这就需要电网的扩展和数字化,以及电网运营商的主动操作。为了研究这种复杂的系统及其现象,可以采用实时模拟或数字孪生(DT)等现代开发方法。在这种方法中,现实世界系统的数字副本(电网部分)被开发出来,它可以代表或预测真实配电网的行为。为此,需要在协同仿真环境中导出并实现真实系统的模型,并通过分析仪或测量系统接收来自电网模型的数据。本文的重点是开发测试电网的数字孪生系统和用于测量的电网分析仪。通过测试网格的数字孪生系统,首先在实时环境中展示了数字孪生系统的功能和交互。随后对数字孪生模型的开发进行了解释,并对结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital Twin Development of a Testing Grid Using a Grid Analyzer
The recent transformation of the energy sector brings new challenges in areas such as supply security, efficiency, and reliability. Especially the increase of decentralized power plants leads to a more complex energy system and an increasing complexity. This requires expansion and digitization of the power grid as well as an initiative-taking operation of the grid operator. To investigate such complex systems and its phenomena, modern development methods such as real-time simulation or digital twins (DT) can be used. In this approach a digital replica of the real-world system, a grid section, is developed, which can represent or predict the behavior of the real distribution grid. For this, a model of the real-world system is derived and implemented in a co-simulation environment, in which it receives data via an analyzer or measurement system from the grid model. This paper focuses on the development of the digital twin of a testing grid and a grid analyzer for the measurement. With the digital twin of the testing grid, a first approach is achieved in a real-time capable environment showing the functionalities and interactions of a digital twin. Subsequently the development of the digital twin model is explained, and the results are discussed.
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来源期刊
CiteScore
8.60
自引率
0.00%
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审稿时长
8 weeks
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