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Co-simulation and control of power-to-heat units in coupled electrical and thermal distribution networks

机译:耦合的配电网络中的热电单元的联合仿真和控制

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There is significant interest in exploiting the hitherto unused synergies by coupling different energy-carrier networks, such as district heating and electrical distribution networks. This paper addresses the ongoing effort in modeling and simulation of the physical and cyber-physical domains of these so-called hybrid thermal-electric networks. The focus thereby is to use tools and semantics that are natural to each of the involved domains. A hierarchical control approach for power-to-heat appliances, taking into account the different involved actors in such a multi-energy network, is presented. At the application level we show how this approach enables the control of electrically heated storage tanks to couple an electrical distribution network with a district heating network. Co-simulation based on the Functional Mock-up Interface is used as it provides a flexible industry-grade standard for coupling simulators and tools and facilitates implementation of advanced control designs. This work contributes in establishing a framework to derive and test complex control strategies for power-to-heat appliances used to couple the different domains and the inherent time scales of hybrid thermal-electrical networks.
机译:通过耦合不同的能量载体网络(例如区域供热和配电网络)来开发迄今为止未使用的协同效应,引起了人们的极大兴趣。本文介绍了对这些所谓的混合热电网络的物理和网络物理领域进行建模和仿真的持续努力。因此,重点是使用每个涉及领域都自然的工具和语义。提出了一种考虑到这种多能源网络中涉及的不同参与者的电力加热设备的分层控制方法。在应用程序级别,我们将展示这种方法如何使电加热储罐的控制使配电网络与区域供热网络耦合。之所以使用基于功能模型接口的协同仿真,是因为它为耦合仿真器和工具提供了灵活的行业级标准,并有助于实现高级控制设计。这项工作有助于建立一个框架,以推导和测试用于混合动力热电网络的不同领域和固有时间尺度的电热设备的复杂控制策略。

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