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Voltage stability evaluation by using extended modal analysis with dynamic internal impedance of synchronous generators

机译:扩展模态分析与同步发电机动态内部阻抗的电压稳定性评估

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The steady-state analysis of power system voltage stability usually overlooks the dynamic characteristic of internal impedance of synchronous generators, which may cause errors when evaluating the margin of voltage stability. In this paper, the dynamic generator internal impedance (dGII) is calculated based on phasor measurements. Then the dGIIs are incorporated into the modal analysis of the power system to get an extended admittance matrix and the corresponding Jacobian matrix. The eigenvalue of the extended Jacobian matrix offers a relative measure to predict the voltage instability. By considering the dGIIs, the extended modal method is able to estimate the voltage instability more accurately than the conventional one without dGIIs. The effectiveness of the proposed method is verified by the simulation studies on a 4-bus system, a WECC 9-bus system, and an IEEE 14-bus system.
机译:电力系统电压稳定性的稳态分析通常会忽略同步发电机内部阻抗的动态特性,这可能会在评估电压稳定性裕度时引起误差。在本文中,基于相量测量来计算动态发电机的内部阻抗(dGII)。然后将dGII合并到电力系统的模态分析中,以获得扩展的导纳矩阵和相应的雅可比矩阵。扩展雅可比矩阵的特征值提供了一种相对的方法来预测电压的不稳定性。通过考虑dGII,与没有dGII的传统方法相比,扩展模态方法能够更准确地估计电压不稳定性。通过对4总线系统,WECC 9总线系统和IEEE 14总线系统的仿真研究,验证了该方法的有效性。

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