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Dq Admittance Prediction of Grid-Tied VSCs Under Variable Operating Conditions

机译:在可变操作条件下,网格绑定VSC的DQ导纳预测

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摘要

Impedance/admittance models (IM/AM) have been widely used to analyze the stability of grid-tied power electronic devices, such as voltage source converter (VSC). However, generally it is very difficult to predict AM of VSC under realistic black/gray-box conditions. This article provides a novel method to efficiently estimate the AM of the VSC under variable operating conditions. This article extends the nearly-decoupled AM (NDAM) for sequence AM to the dq domain and simplifies the algorithm by an iteration approach. A curve (transfer function) fitting method is further proposed to obtain the AM based on the information of a few disturbance frequencies, which could expedite the algorithm greatly. Finally, the above algorithms are verified by wide simulations under different control strategies. The whole approach can be called as improved nearly-decoupled AM (INDAM), which is expected to be applied to stability analysis of power-electronic-based power systems in practicality.
机译:阻抗/入场型号(IM / AM)已被广泛用于分析网格栓电力电子设备的稳定性,例如电压源转换器(VSC)。然而,通常很难在现实的黑/灰盒条件下预测VSC的AM。本文提供了一种新的方法,可以在可变操作条件下有效地估算VSC的AM。本文将序列AM(Ndam)扩展到DQ域的近似解耦的AM(Ndam),并通过迭代方法简化算法。进一步提出了一种基于一些扰动频率的信息来获得AM的曲线(传递函数)拟合方法,这可以大大加快算法。最后,通过不同的控制策略下通过广泛的模拟验证上述算法。整个方法可以被称为改进的近天去耦的AM(Indam),这预计将应用于实用性的电力电子电力系统的稳定性分析。

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