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Design, analysis and optimization of high speed axial flux permanent magnet synchronous motor for centrifuge application

机译:离心机用高速轴向磁通永磁同步电动机的设计,分析和优化

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Future Pressurised Heavy Water Reactors (PHWRs) are expected to use Slightly Enriched Uranium (SEU), which can increase the nuclear burn-up by about three times compared to the current nuclear technology. High speed centrifuge rotating at speeds above 30 krpm is essential for uranium enrichment. This paper presents novel design and analysis of a high speed axial flux permanent magnet motor for centrifuge application. The centrifuge motor is designed to rotate at a speed of 45000 rpm inside an evacuated casing for a long time. The proposed axial flux motor has light, yet strong, well-balanced rotor that can run for about 25 years continuously. The designed motor is optimized for obtaining superior performance. MagNet 3-D and OptiNet are used for the Finite Element Analysis (FEA) and optimization of the motor respectively and the results are presented. Finally, the fabricated motor is tested using sensorless Field Oriented Control (FOC) for experimental verification.
机译:未来的加压重水反应堆(PHWR)预计将使用轻度浓缩铀(SEU),与当前的核技术相比,其可将核燃耗提高约三倍。高速离心机以高于30 krpm的速度旋转对于浓缩铀至关重要。本文介绍了用于离心机的高速轴向磁通永磁电动机的新颖设计和分析。离心电机设计为在抽真空的外壳内以45000 rpm的速度长时间旋转。拟议中的轴向磁通电动机具有轻巧而坚固的平衡良好的转子,可以连续运行约25年。设计的电机经过优化,可实现出众的性能。 MagNet 3-D和OptiNet分别用于有限元分析(FEA)和电机优化,并给出了结果。最后,使用无传感器磁场定向控制(FOC)对装配好的电动机进行测试以进行实验验证。

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