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In-Vehicle System Identification of an Induction Motor Loss Model ?

机译:车载系统识别感应电机损耗模型

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摘要

The influence of induction motor model parameter deviations on field-oriented control performance has been widely investigated. Various methods have been introduced to track variations of magnetic and resistive parameters of the so called T-equivalent circuit model. Online methods on embedded systems exist and are successfully used in modern motor controls. For the use in vehicle motion control and particularly supervisory controls, however, state-of-the-art identification methods may not be applied directly, due to restricted communication interfaces or a limited amount of available measurements at sampling frequencies above the required rates. To cope with these limitations, a moddeling approach is introduced which is based on the equivalent flat system representation of the induction motor, stationary operation conditions, and the incorporation of the vehicle specific field-oriented control strategy. The inclusion of the control strategy allows for derivation of least-square error formulations which are used to identify a selection of induction motor model parameters from low frequency vehicle measurements. An experimental study demonstrates the accuracy of the proposed method and shows how effectively the introduced model can reproduce the measurment of the rms phase current and electric power.
机译:引入对面向现场控制性能的感应电动机模型参数偏差的影响已得到广泛研究。已经引入了各种方法以追踪所谓的T型电路模型的磁性和电阻参数的变化。存在于嵌入式系统的在线方法,并以现代电机控制成功使用。然而,对于用于车辆运动控制的使用,特别是监控控制,由于限制通信接口或在所需速率上方的采样频率下的可用测量有限的可用测量,可能不会直接应用最先进的识别方法。为了应对这些限制,介绍了一种基于感应电动机,静止操作条件的等效平坦系统表示和车辆特定现场导向控制策略的等效平坦系统表示。包含控制策略允许导出最小二乘误差制剂,其用于识别来自低频车辆测量的感应电动机模型参数的选择。实验研究表明了所提出的方法的准确性,并示出了引入的模型可以有效地再现RMS相电流和电力的有效性。

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