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Modeling of Grid-Forming Inverters for Transient Stability Simulations of an all Inverter-based Distribution System

机译:用于基于全逆变器的配电系统暂态稳定性仿真的网格形成逆变器建模

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Existing models of grid-forming inverters are typically three-phase electromagnetic models and positive sequence electromechanical models. Neither of them is suitable for dynamic simulations of large-scale three-phase unbalanced distribution systems. In order to investigate grid-forming inverters' impact on the transient stability of large-scale three-phase unbalanced distribution systems, a dynamic model of a grid-forming inverter is developed and implemented in an open-source GridLAB-D simulation environment. The advantage of this method is that it can be extended to full-size three-phase unbalanced distribution systems. Simulation results of an all grid-forming, inverter-based, modified version of the IEEE 123-node distribution system verify the capability of grid-forming inverters to maintain the transient stability of a resilient distribution system.
机译:现有的网格形成逆变器模型通常是三相电磁模型和正序机电模型。它们都不适合用于大型三相不平衡配电系统的动态仿真。为了研究网格形成逆变器对大型三相不平衡配电系统的暂态稳定性的影响,开发了网格形成逆变器的动态模型,并在开源GridLAB-D仿真环境中实现了该模型。这种方法的优点是可以扩展到全尺寸的三相不平衡配电系统。 IEEE 123节点配电系统的所有基于电网的,基于逆变器的改进版本的仿真结果验证了电网形成的逆变器保持弹性​​配电系统的暂态稳定性的能力。

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