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Dynamic modeling of induction motor loads for transient voltage stability studies

机译:瞬态电压稳定性研究的感应电动机负荷动态建模

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Due to the complex nature of the dynamic stability studies, and the high cost of simulating large power systems in real time, most of the voltage stability studies are limited to the static techniques. The main disadvantage of the static modeling is its inability to capture the dynamic behavior of induction motors which is a common load in the power system. This paper compares between the static and dynamic models of aggregated induction motor loads. It demonstrates that in some disturbance cases, the static load modeling fails to predict the actual response of induction motor loads. The studies show that while the static load model predicts a stable operation with both the conventional P-V curve and a P-V curve of the induction motor load at different values of machine slip, the dynamic model shows unstable operation for the same cases. Finally, the effect of the dynamic load inertia on system stability is studied. Although the inertia constant of a dynamic load is significant in studying its stability, static load model is unable to take it into consideration. Simulations will show that for similar rating motors with different inertia constant, the steady state condition varies. This exposes another deficiency in static load models of induction motors.
机译:由于动态稳定性研究的复杂性,以及实时模拟大电源系统的高成本,大部分电压稳定性研究都仅限于静态技术。静态建模的主要缺点是其无法捕获电动机中常见负载的感应电动机的动态行为。本文比较了聚集的感应电动机负载的静态和动态模型。它表明,在一些干扰案例中,静态载荷建模不能预测感应电动机负载的实际响应。研究表明,虽然静态负荷模型以传统的P-V曲线和机器滑动的不同值的传统P-V曲线和感应电动机负载的P-V曲线预测稳定运行,但动态模型对同一情况表示不稳定的操作。最后,研究了动态载荷惯性对系统稳定性的影响。虽然动态负荷的惯性常数在研究其稳定性方面是显着的,但静态负荷模型无法考虑。模拟将显示,对于具有不同惯性恒定的类似额定电机,稳态条件变化。这在感应电动机的静电载荷模型中暴露了另一种不足。

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