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A Case Study on the Application of the Nyquist Stability Criterion as Applied to Interconnected Loads and Sources on Grids

机译:奈奎斯特稳定性判据在电网相互连接的负荷和源上的应用案例研究

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摘要

As the penetration of complex grid-connected devices, such as power electronic inverters, increases, so too does the complexity of analyzing system stability. A graphical application of the Nyquist stability criterion is presented that indicates how an individual load and source each contribute to the closed-loop system grid eigenvalues. The case study is not limited to particular impedance forms or scenarios like the more common complex torque coefficient method or passivity theory method. From the individual frequency responses of the load and source impedances, the graphical technique indicates how each impedance contributes to the system stability. Examples are provided that successfully indicate the cause of instability for a digitally controlled voltage source inverter (VSI) operating as a microgrid, with a current source inverter as a load. A second example is provided that identifies the potential instability of a VSI running an induction machine. A 42-kW inverter system is used to confirm the findings, showing a close correlation with the theoretical analysis.
机译:随着复杂的并网设备(例如电力电子逆变器)的渗透率增加,分析系统稳定性的复杂性也随之增加。提出了Nyquist稳定性标准的图形化应用程序,该图形应用程序指示单个负载和源如何分别对闭环系统网格特征值做出贡献。案例研究不限于特定的阻抗形式或场景,例如更常见的复转矩系数方法或无源理论方法。从负载和源阻抗的各个频率响应中,图形技术表明了每个阻抗如何有助于系统稳定性。提供了一些示例,这些示例成功表明了以微电网和电流源逆变器为负载运行的数控电压源逆变器(VSI)不稳定的原因。提供第二个示例,该示例标识运行感应电机的VSI的潜在不稳定性。 42 kW逆变器系统用于确认发现,与理论分析密切相关。

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