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Iron Loss Calculation of AC Filter Inductor for Three-Phase PWM Inverters

机译:三相PWM逆变器交流滤波器电感的铁损计算

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In recent years, remarkable advancement of new power semiconductor devices, such as SiC and GaN, enables the increase of switching frequency of power converters, and hence the volume of passive components, such as ac filters and transformers, can be reduced. However, temperature rise caused by the inductor loss is increasing, and hence iron loss evaluation of the inductor is one of the most important issues to realize high power density converters. Conventionally, an improved generalized Steinmetz equation (iGSE) has proposed in order to calculate the iron loss under a pulse voltage magnetizing condition. However, accurate iron loss calculation of the ac filter inductor used in a PWM inverter cannot be realized. The authors have proposed two methods of iron loss evaluation of ac filter inductors. The first one is a loss map method which can calculate the iron loss without using a real PWM inverter. Another one is an ILA (Inductor Loss Analyzer) which can measure the iron loss in every switching period in a real PWM inverter. In this paper, comparisons of the iron loss between the ILA and the loss map method on both the single-phase and three-phase inverters are studied. It is found that iron loss of the ac filter inductor in the three-phase PWM inverter which is calculated by the loss map method cause a large error on a specific condition. In order to prevent the calculation error, the authors proposed a revised loss map method and proved the effectiveness of the method.
机译:近年来,新型功率半导体器件(例如SiC和GaN)的显着进步使功率转换器的开关频率得以提高,因此可以减少无源元件(例如交流滤波器和变压器)的体积。然而,由电感器损耗引起的温度升高正在增加,因此,电感器的铁损评估是实现高功率密度转换器的最重要问题之一。常规地,提出了一种改进的广义斯坦因茨方程(iGSE),以便计算在脉冲电压磁化条件下的铁损。但是,无法实现PWM逆变器中使用的交流滤波电感器的准确铁损计算。作者提出了两种评估交流滤波电感器铁损的方法。第一种是损耗图方法,无需使用实际的PWM逆变器即可计算铁损。另一个是ILA(电感损耗分析仪),它可以测量实际PWM逆变器中每个开关周期的铁损。本文研究了单相和三相逆变器的ILA和损耗图方法之间的铁损比较。发现通过损耗图法计算出的三相PWM逆变器中的交流滤波电感器的铁损在特定条件下引起较大的误差。为了防止计算误差,作者提出了一种改进的损耗图方法,并证明了该方法的有效性。

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