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Dynamic Operation of High Power Synchronous Generator in Asynchronous Regime or encountering Three-Phase Shortcircuit

机译:大功率同步发电机在异步或三相短路状态下的动态运行

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This paper presents a method of modeling the synchronous machine subjected to transient regimes. Then, the obtained model is utilized to simulate the dynamic behavior of the high power synchronous generator in conditions of asynchronous operation and for sudden three-phase short circuit occurred at the stator winding terminals. The model is based on Park-Blondel equations expressed in canonical form. The equations are built considering the influence of the induced current into the massive rotor of the generator and the nonlinearity of the magnetization characteristic. For the fulfillment of the simulated cases, an implicit Gear algorithm of third order is applied for the integration of the equations. The results obtained through simulations performed using the proposed model, are compared to those obtained running the predefined model offered for the synchronous machine by Simulink package from MATLAB. In both cases identical simulation scenarios are considered.
机译:本文提出了一种对瞬态状态下的同步电机进行建模的方法。然后,使用获得的模型来模拟大功率同步发电机在异步运行条件下的动态行为,以及定子绕组端子处突然发生三相短路的情况。该模型基于以规范形式表示的Park-Blondel方程。考虑到流入发电机大型转子的感应电流的影响和磁化特性的非线性,建立方程。为了满足模拟情况,将三阶隐式Gear算法应用于方程的积分。通过使用建议的模型执行的仿真获得的结果与通过MATLAB的Simulink软件包运行为同步机提供的预定义模型获得的结果进行了比较。在这两种情况下,都将考虑相同的模拟方案。

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