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One-dimensional Lumped-Circuit for Transient Thermal Study of an Induction Electric Motor

机译:感应电动机瞬态热研究的一维集总电路

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Electrical machines lifetime and performances could be improved when along the design process both electromagnetic and thermal behaviors are taken into account. Moreover, real time information about the device thermal state is necessary to an appropriate control with minimized losses. Models based on lumped parameter thermal circuits are: generic, rapid, accurate and qualified as a convenient solution for power systems. The purpose of the present paper is to validate a simulation platform intended for the prediction of the thermal state of an induction motor covering all operation regimes. To do so, in steady state, the proposed model is validated using finite element calculation and experimental records. Then, in an overload situation, obtained temperatures are compared to finite element’s ones. It has been found that, in both regimes, simulation results are with closed proximity to finite element’s ones and experimental records.
机译:当在设计过程中同时考虑电磁和热性能时,可以改善电机的使用寿命和性能。而且,关于器件热状态的实时信息对于以最小的损耗进行适当的控制是必需的。基于集总参数热回路的模型为:通用,快速,准确且经过认证可作为电力系统的便捷解决方案。本文的目的是验证旨在用于预测涵盖所有运行方式的感应电动机的热状态的仿真平台。为此,在稳态下,使用有限元计算和实验记录对所提出的模型进行验证。然后,在过载情况下,将获得的温度与有限元的温度进行比较。已经发现,在两种情况下,模拟结果都与有限元和实验记录非常接近。

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