高温对高速永磁电机电磁及机械性能的影响

A. Tameemi
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引用次数: 0

摘要

一般来说,电机是在标准室温(20°C)下设计、分析和优化的,由于电磁损耗产生的热量而导致的温度上升通常通过冷却系统进行管理。在电动辅助涡轮增压器中,电机在环境温度在200°C到300°C之间的更具挑战性的条件下运行。这使得高温、高性能机器的发展不仅是一个安全问题,而且是一个性能问题。因此,这些高温对用于涡轮增压器的高速永磁同步电机(PMSM)的电磁和机械性能的影响是本研究的主题。首先,讨论了SPM机床所用材料的电磁特性和力学特性随温度变化的变化。利用有限元分析(FEA)对永磁同步电动机在20℃和200℃下的电磁性能进行了准确的预测和比较,包括气隙磁通密度、空载电压、输出转矩、转矩-转速特性、电磁损耗和效率、转子机械应力等。最后,在20°C和200°C下进行了单独的设计参数优化,以突出高温对预测最优值的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of High Temperature on Electromagnetic and Mechanical Performances of High-Speed Permanent Magnet Machines
Generally, electrical machines are designed, analyzed, and optimized at standard room temperature (20°C), and the rise in temperature due to the heat generated by the electromagnetic losses is normally managed through cooling systems. In the electrically assisted turbocharger, the electrical machine operates in more challenging conditions where the ambient temperature is between 200°C and 300°C. This makes the development of high-temperature, high-performance machines is not only a safety issue but also a performance issue. Therefore, the impact of these high temperatures on the electromagnetic and mechanical performances of a high-speed permanent magnet synchronous machine (PMSM) intended for use in turbochargers is the subject of this study. Firstly, the changes in the electromagnetic and mechanical characteristics of the materials used in the SPM machine due to temperature variation are discussed. Moreover, finite element analysis (FEA) is used to make accurate predictions and comparisons about the electromagnetic performance of the PMSM running at 20°C and 200°C, including the airgap flux density, no-load voltage, output torque, torque-speed characteristics, electromagnetic losses and efficiency, and rotor mechanical stress. Finally, an individual design parameter optimization is carried out at 20°C and 200°C to highlight the influence of high temperatures on the predicted optimum values.
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