面向跨学科智能集成能源系统的更全面的开源模型

Béla Wiegel, Tom Steffen, D. Babazadeh, C. Becker
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引用次数: 0

摘要

能源转型最近进一步加速。为了使可再生能源的整合尽可能具有成本效益、安全性和可持续性,并为能源系统开发新的范例,在过去的研究中开发了许多能源系统模型来评估解决方案。虽然文献中广泛讨论了模型识别和结果传播,但通常缺少对方法的详细看法。本文讨论了这一主题,并提出了一种方法来建立一个全面的,公开访问的数据库,用于建模多模态集成能源系统。本文的重点是由产消者、蓄电池、热泵和电动汽车组成的低压和中压电网的动态建模。此外,还对区域供热网络进行了参数化,使之与电网相匹配。Modelica和TransiEnt-Library作为建模工具。创建网格模型的方法可以通过GitLab获得。最后给出了一个应用该方法分析中压配电网内拥塞情况的实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a more comprehensive open-source model for interdisciplinary smart integrated energy systems
The energy transition has recently experienced a further acceleration. In order to make the integration of renewable energies as cost-effective, secure and sustainable as possible and to develop new paradigms for the energy system, many energy system models have been developed in research in the past to evaluate the solutions. While model identification and dissemination of results are widely discussed in the literature, a detailed view of the methodology is often missing. This paper addresses this topic and proposes a methodology to build a comprehensive, publicly accessible database for modeling a multi-modal integrated energy system. The focus hereby is dynamic modeling of low- and medium-voltage grids consisting of prosumers, battery storages, heat pumps and electric cars. In addition, a district heating network is parameterized to match the electricity grid. Modelica and the TransiEnt-Library serves as the modeling tool. The methodology for creating the grid models is available via GitLab. A study case that uses the methodology to analyze the congestion situation within a medium-voltage distribution grid is presented.
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