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Dynamic Power Electronic Load Model for Transient Stability Analyses

机译:瞬态稳定性分析动态电力电子负荷模型

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In this paper a dynamic power electronic load model for transient stability analyses is developed, especially for voltage stability investigations. Since the share of power electronic loads increases and their impact on stability in the phasor domain is rarely or insufficiently investigated, e.g. with constant loads, the need for appropriate dynamic model rises. Based on a detailed component-based approach, a dynamic model is developed in this work, where only the grid voltage is an input to calculate its fundamental power response. Furthermore, the calculation is based only on analytical expressions for computational efficiency. As the comparison with the detailed model shows, the power response of the developed models is accurate. In addition, an inclusion in transient stability programs is proposed to deal with different simulation step sizes. Concluding, a use case of the developed model shows that power electronic loads have a decisive impact on short and long-term voltage stability.
机译:在本文中,开发了一种用于瞬态稳定性分析的动态电力电子负荷模型,特别是对于电压稳定性研究。由于电力电子负载的份额增加,并且它们对量量域中的稳定性的影响很少或者不充分地研究,例如,例如,研究具有恒定负载,需要适当的动态模型上升。基于一种基于组件的方法,在这项工作中开发了一种动态模型,其中仅电网电压是计算其基本功率响应的输入。此外,计算仅基于用于计算效率的分析表达式。随着与详细模型的比较,开发模型的功率响应是准确的。另外,提出了在瞬态稳定性方案中包含不同的模拟步骤尺寸。结论,开发模型的用例表明,电力电子负载对短期和长期电压稳定性具有决定性的影响。

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