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Modeling of Eddy-Current Loss of Electrical Machines and Transformers Operated by Pulsewidth-Modulated Inverters

机译:脉宽调制逆变器驱动的电机和变压器涡流损耗建模

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摘要

Pulsewidth-modulated (PWM) inverters are used more and more to operate electrical machines and to interface renewable energy systems with the utility grid. However, there are abundant high-frequency harmonics in the output voltage of a PWM inverter, which increase the iron losses and result in derating of the machine or transformer connected to them. Predicting the iron losses caused by the PWM supply is critical for the design of electrical machines and transformers operated by PWM inverters. These losses are primarily attributed to eddy-current loss caused by the PWM supply. In this paper, after analyzing the harmonic components of PWM voltage, we derive the effects of different parameters of PWM switching on the eddy-current loss. We compare the iron losses modeled with the proposed analytical methods on a three-phase transformer, a dc motor, and an induction motor with the results of time-stepping finite-element analysis and experiments. We provide detailed equations for the prediction of iron losses. These equations can be directly applied in the design and control of PWM converters and electric motors to improve energy efficiency in electrical machines and transformers operated from PWM converters.
机译:脉宽调制(PWM)逆变器越来越多地用于操作电机并将可再生能源系统与公用电网连接。但是,PWM逆变器的输出电压中存在大量的高频谐波,这会增加铁损,并导致与之相连的电机或变压器降额。预测由PWM电源引起的铁损对于由PWM逆变器操作的电机和变压器的设计至关重要。这些损耗主要归因于PWM电源引起的涡流损耗。本文在分析了PWM电压的谐波分量后,得出了PWM开关不同参数对涡流损耗的影响。我们将采用拟议的分析方法对三相变压器,直流电动机和感应电动机建模的铁损与时步有限元分析和实验的结果进行了比较。我们提供了用于预测铁损的详细公式。这些方程式可直接应用于PWM转换器和电动机的设计和控制中,以提高由PWM转换器运行的电机和变压器的能效。

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