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Procedure of Consecutively No-load Tests for the Identification of Control Relevant Equivalent Circuit Parameter of Squirrel Cage Motors

机译:连续无负载测试的步骤,用于识别鼠笼电机的控制相关等效电路参数

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The realization of a vector control for the operation of induction motors often takes advantage of ordinary equivalent circuit models. These are usually based on a set of lumped resistive and inductive parameters for a substituted characterization of the real motor design. Some simplified models are consisting of a reduced number of system parameters and allow a very basically identification procedure by no-load tests in the lab. Fictive identification tests could fortunately be carried out by the finite element method during the development and optimization process, without the necessity of cost-extensive prototyping. Such numerically obtained equivalent parameters of projected motor designs are used within an even more complex simulation of the complete controlled drive system. Deviations between the numerically predicted controlled system behavior and the required features could be found and eliminated in advance.
机译:对感应电动机操作的矢量控制的实现通常利用普通的等效电路模型。这些通常基于一组集总电阻和电感参数,用于取代真实电机设计的替代表征。一些简化的模型由减少数量的系统参数组成,并在实验室中通过无负载测试允许非常基本的识别程序。在开发和优化过程中,有限元方法可以幸运地进行虚构识别测试,而无需成本广泛的原型。在完全控制的驱动系统的更复杂模拟中使用这种数值获得的投影电动机设计的等效参数。可以预先发现和消除数值预测的受控系统行为和所需特征之间的偏差。

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