联合能源实验室-测试μCHPs并网和孤岛运行模式的测试环境

Jens Werner, P. Schegner, J. Seifert
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引用次数: 0

摘要

德国的电力系统发生了根本性的变化。微型热电联产(μCHPs)、热泵或光伏系统等新技术连接到低(LV)和中压(MV)水平。这导致了配电网络的活跃和微型电网实施的可能性。为了评估这些器件对系统的影响,设计了一个测试μCHPs的测试环境。该环境允许在考虑热负荷的情况下,用电力系统模拟器模拟并网和孤岛运行模式。本文对电力系统和热网仿真器进行了详细的描述。在第一步中,解释了相应的研究项目,并遵循了联合能源实验室(CEL)的工作原理和关键事实。介绍了电力系统仿真器的结构,并指出了存在的问题。最后给出了可导的应用可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Combined Energy Lab - A test environment for testing μCHPs in grid-connected and islanded mode of operation
In Germany the electrical power system changes fundamentally. New technologies like Micro Combined Heat and Power Plants (μCHPs), heat pumps or photovoltaic systems are connected to the low (LV) and medium voltage (MV) level. These lead to active distribution networks and the possibility to implement mini-grids. To evaluate the influence of these devices to the system a test environment was designed in which μCHPs could be tested. The environment enables the emulation of grid-connected and islanded mode of operation with a power system emulator under consideration of thermal loads. In this paper the electrical power system and thermal network emulator are described in detail. In a first step the corresponding research project is explained and following the working principle and the key facts of the Combined Energy Lab (CEL) are shown. The structure of the power system emulator is described and different challenges are pointed out. Finally the derivable application possibilities are presented.
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