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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Power Density and Temperature Rise Estimation at End-turn Stress Grading System of Large Rotating Machines under PWM Waveform
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Power Density and Temperature Rise Estimation at End-turn Stress Grading System of Large Rotating Machines under PWM Waveform

机译:PWM波形下大型旋转机器端转应力分级系统的功率密度和温度升降

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摘要

In this paper, the time-averaged power densities as well as the resulting temperature rise, on an end-turn stress grading (SG) system under PWM waveforms as functions of the carrier and the fundamental frequencies are systematically investigated by finite element method-based computations. A novel analytical approximation method to estimate the power densities and the temperature rises without time-consuming numerical computations are proposed. As a result, the maximum power density and the temperature rise increase nearly linearly with increasing fundamental and the carrier frequencies. It is suggested that power dissipations in the SG layer by the fundamental frequency component of a PWM waveform and those by the carrier frequency component can be clearly separated. Moreover, the estimated power densities and temperature rises based on the analytical approximations show reasonable agreement with the numerically computed ones, which indicates the validity of the proposed estimation method.
机译:在本文中,通过基于有限元方法系统地研究了在PWM波形下作为载体的函数和基本频率下的PWM波形下的端转应力分级(SG)系统上的时间平均功率密度以及所得到的温度升高计算。提出了一种估计功率密度和温度升高而不耗时数值计算的新的分析近似方法。结果,随着基本的基本和载波频率增加,最大功率密度和温度上升几乎线性地增加。建议通过PWM波形的基本频率分量和载流子频率分量的基本频率分量的功率耗散可以清楚地分离。此外,基于分析近似的估计功率密度和温度升高显示了与数值计算的近似的合理一致,这表明所提出的估计方法的有效性。

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