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首页> 外文期刊>IEEE Transactions on Energy Conversion >A Dynamic Model for Saturated Induction Machines With Closed Rotor Slots and Deep Bars
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A Dynamic Model for Saturated Induction Machines With Closed Rotor Slots and Deep Bars

机译:具有闭合转子槽和深杆的饱和感应机的动态模型

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This paper deals with a dynamic model for three-phase induction machines equipped with closed rotor slots and deep rotor bars. The thin bridges closing the rotor slots saturate highly as a function of the rotor current. The impedance of the rotor bars also varies much as a function of the rotor current frequency. An extended dynamic model, which takes into account the slot-bridge saturation and the deep-bar effect, is developed. The model extensions can be plugged into a standard machine model and parametrized easily. The proposed model can be applied to time-domain simulations, real-time control, and identification. The model is validated by means of finite-element analysis and experiments using a four-pole 5.6-kW induction machine. The results show that the accuracy of the proposed model is superior to the standard model, particularly under transient excitation typically used in standstill self-commissioning tests of induction motor drives.
机译:本文涉及配备有封闭转子槽和深转子杆的三相感应机的动态模型。闭合转子槽的薄桥作为转子电流的函数高度饱和。转子杆的阻抗也随着转子电流频率的函数而变化。开发了一种扩展动态模型,其考虑了槽桥饱和度和深杆效果。模型扩展可以容易地插入标准机器模型和参数化。所提出的模型可以应用于时域模拟,实时控制和识别。通过使用四极5.6千瓦感应机的有限元分析和实验验证该模型。结果表明,所提出的模型的准确性优于标准模型,特别是在瞬态激励下,通常用于感应电动机驱动器的静止自调试测试。

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