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Research on the influence of rotational speed on the performance of high-speed permanent-magnet generator

机译:转速对高速永磁发电机性能影响的研究

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When the machine is at high speed, serious problems occur, such as high frequency loss, difficult thermal management, and the rotor structural strength insufficiency. In this paper, the performances of two high-speed permanent magnet generators (HSP- MGs) with different rotational speeds and the same torque are compared and analyzed. The two-dimensional finite element model (FEM) of the 117 kW, 60 000 rpm HSPMG is established. By comparing a calculation result and test data, the accuracy of the model is verified. On this basis, the 40 kW, 20 000 rpm HSPMG is designed and the FEM is established. The relationship between the voltage regulation sensitivity and power factor of the two HSPMGs is determined. The influence mechanism of the voltage regulation sensitivity is further revealed. In addition, the air-gap flux density is decomposed by the Fourier transform principle, and the influence degree of different harmonic orders on the HSPMG performance is determined. The method to reduce the harmonic content is further proposed. Finally, the method to improve the HSPMG overload capacity is obtained by studying the maximum power. The research showed that the HSPMG at low speed (20 000 rpm) has high sensitivity of the voltage regulation, while the HSPMG at high speed (60 000 rpm) is superior to the HSPMG at low speed in reducing the harmonic content and increasing the overload capacity.
机译:当机器处于高速时,发生严重问题,如高频丢失,难度管理,以及转子结构强度不足。在本文中,比较和分析了具有不同转速和相同扭矩的两个高速永磁发电机(Hsp-Mgs)的性能。建立了117 kW,60 000 rpm Hspmg的二维有限元模型(FEM)。通过比较计算结果和测试数据,验证了模型的准确性。在此基础上,设计了40 kW,20 000 rpm Hspmg,并建立了FEM。确定了两个HSPMG的电压调节灵敏度和功率因数之间的关系。进一步揭示了电压调节灵敏度的影响机理。另外,通过傅里叶变换原理分解空气间隙磁通密度,并确定不同谐波顺序对Hspmg性能的影响程度。进一步提出了减少谐波含量的方法。最后,通过研究最大功率获得提高HSPMG过载容量的方法。该研究表明,低速(20 000rpm)的HSPMG对电压调节的灵敏度很高,而高速(60 000rpm)的Hspmg以低速低于Hspmg,减少谐波含量并增加过载容量。

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