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Loss evaluation of AC filter inductor core on a PWM converter

机译:PWM转换器上交流滤波器电感器铁芯的损耗评估

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This paper presents a core loss evaluation of AC filter inductor used on PWM converters. In order to increase the power density of the converters, high-frequency switching techniques have been applied. However, because of the limitation of cooling capability, reduction of volume of the passive components, especially the magnetic components, are limited. In order to overcome the problems, it is necessary to evaluate the loss of the magnetic components. However, conventional iron loss evaluation method, such as Steinmetz equation, cannot possible to evaluate the core loss, because those cannot take the dc-bias magnetizing condition into account. The authors have been proposed two kinds of iron loss evaluation method, the one is “a loss-map method” and the other is “an inductor loss analyzer (ILA)”. A distinctive feature of those methods is that one can know the iron loss during each switching period on the PWM inverters. Also, former one is suitable for accurate calculation of the core loss in designing process, and the later one is suitable for measuring the core loss on the practical system. By using those methods accurate design and evaluation of the iron loss can be made, and hence high power density design of the converters is realized. In this paper, firstly, a loss-map method which enables to calculate the iron loss of the ac/dc inductor in each switching period of the PWM inverter is briefly described. In the next section, an accurate measuring method of the iron loss of the ac filter inductor operating in a real PWM inverter is described. And it is proved that calculated and measured results coincide well. In the final section, iron loss characteristics of the ac filter inductor with various operating conditions of PWM inverter are discussed.
机译:本文介绍了用于PWM转换器的交流滤波电感器的磁芯损耗评估。为了增加转换器的功率密度,已经应用了高频开关技术。然而,由于冷却能力的限制,无源部件,尤其是磁性部件的体积的减小受到限制。为了克服这些问题,有必要评估磁性部件的损耗。但是,传统的铁损评估方法(例如Steinmetz方程)无法评估铁损,因为那些铁损评估方法无法考虑dc偏置磁化条件。作者提出了两种铁损评估方法,一种是“损耗图法”,另一种是“电感器损耗分析仪(ILA)”。这些方法的独特之处在于,人们可以知道PWM逆变器在每个开关周期内的铁损。另外,前者适合在设计过程中准确计算铁损,而后者适合在实际系统中测量铁损。通过使用这些方法,可以对铁损进行准确的设计和评估,因此可以实现转换器的高功率密度设计。在本文中,首先简要介绍了一种损耗图方法,该方法能够计算PWM逆变器每个开关周期中的交流/直流电感器的铁损。在下一节中,将介绍在实际PWM逆变器中工作的交流滤波电感器的铁损的准确测量方法。并证明了计算结果与实测结果吻合良好。在最后一节中,讨论了在PWM逆变器的各种工作条件下交流滤波器电感器的铁损特性。

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