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首页> 外文期刊>Industry Applications, IEEE Transactions on >Winding Thermal Modeling and Parameters Identification for Multithree Phase Machines Based on Short-Time Transient Tests
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Winding Thermal Modeling and Parameters Identification for Multithree Phase Machines Based on Short-Time Transient Tests

机译:基于短时瞬态测试的多线相机绕组热建模和参数识别

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摘要

Short-time thermal transient identification method was successfully adopted to evaluate the winding thermal parameters of induction motors for industry applications. In this work, the modeling approach and the identification methodology are extended to the more sophisticated case of multiple three-phase machines. The generalized model takes into consideration the mutual heat exchange between the windings as well as the possible causes of temperature mismatch. A complete procedure to evaluate the parameters of the modified model is provided, supported by experimental validation on a 7.5 kW machine with two three-phase windings in contact at slot level. The method covers any type of multiple three-phase machines, whatever the thermal promiscuity of the winding sets: From deep coupling as the ones presented, to the case where only the end-turns are in contact, to the completely decoupled case. The proposed technique can be useful for the machine design and for real-time temperature monitoring during operation.
机译:成功采用了短时间热瞬态识别方法来评估工业应用的感应电动机的绕组热参数。在这项工作中,建模方法和识别方法延伸到多个三相机的更复杂的情况。广义模型考虑了绕组之间的相互热交换以及温度不匹配的可能原因。提供了一种评估修改模型参数的完整程序,通过7.5 kW机器上的实验验证支持,其中两个三相绕组在插槽电平接触。该方法覆盖了任何类型的多个三相机器,无论绕组组的热滥交方式:从呈现的绕组的深度耦合到何处,在仅末端接触的情况下,到完全解耦的情况。所提出的技术可用于机器设计和用于操作期间的实时温度监控。

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