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Experimental measurement of eddy current loss in permanent magnets of electrical machines with a PWM signal generated by a frequency converter

机译:用变频器产生的PWM信号对电机永磁体中涡流损耗进行实验测量

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In today's highly automated world, permanent magnet synchronous machines (PMSMs), commonly used in the industrial automation of traction, robotics or aerospace, require higher power density and efficiency. When developing such PMSMs, the eddy current loss (i.e. permanent magnet loss) in the permanent magnets (PMs), especially with respect to temperature and frequency influence, must be considered. The increase in the temperature of PMs above the allowed maximum temperature leads to a tendency towards irreversible demagnetization and changes in the electrical conductivity of the material. Similarly, higher harmonics with different frequencies influence the eddy current loss of the PMs. The accurate analytical analysis and measurement methods of PM loss can help PMSM designers to create robust PMSMs with high tolerances and higher energy efficiency at low manufacturing costs. In this paper, measurement methods and a finite element method (FEM) simulation for the PM loss of PMSMs are presented and compared. In addition, we consider the eddy current loss (i.e. PM loss) in PMs, which are under external magnetic fields generated with a sinusoidal or non-sinusoidal pulse width modulation (PWM) signal under higher frequency effects.
机译:在当今高度自动化的世界中,通常在牵引,机器人或航空航天工业自动化中使用的永磁同步电机(PMSM)需要更高的功率密度和效率。在开发此类PMSM时,必须考虑永磁体(PM)中的涡流损耗(即永磁体损耗),尤其是在温度和频率影响方面。 PMs的温度升高超过允许的最高温度会导致不可逆退磁的趋势以及材料电导率的变化。同样,具有不同频率的高次谐波会影响PM的涡流损耗。精确的PM损耗分析分析和测量方法可以帮助PMSM设计人员以低制造成本创建具有高容差和更高能效的稳健PMSM。本文提出并比较了PMSM的PM损失的测量方法和有限元模拟(FEM)。此外,我们考虑了PMs中的涡流损耗(即PM损耗),这些涡流损耗是在正弦或非正弦脉冲宽度调制(PWM)信号在较高频率影响下产生的外部磁场下产生的。

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