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Piecewise variable parameter loss model of laminated steel and its application in fine analysis of iron loss of inverter-fed induction motors

机译:叠层钢分段变参数损失模型及其在变频感应电动机铁损精细分析中的应用

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Due to the coaction of supply harmonics and harmonic fields inside the motors, the mechanism and distribution characteristics of iron losses become more complicated in inverter-fed induction motors. Therefore, accurate prediction and fine analysis of iron loss are very important at the design stage of high-efficiency inverter-fed induction motor. In order to predict the iron losses accurately, this paper proposes a piecewise iron loss model whose parameters vary with the amplitude and frequency of flux density, and two additional flux density terms are introduced to the classical iron loss model considering the nonlinearity of magnetic material and harmonic fields. With this model, the iron losses are calculated for an inverter-fed 5.5kW induction motor. The results reveal the distribution characteristics of hysteresis and eddy current losses in stator and rotor cores, and acquire the characteristics of additional iron loss caused by harmonic fields. By the comparison of predicted and measured no-load iron loss under different supply voltages and switching frequencies, the proposed model and analysis results are validated.
机译:由于电动机内部的电源谐波和谐波场的共同作用,在逆变器供电的感应电动机中,铁损的机理和分布特性变得更加复杂。因此,在高效逆变器馈电感应电动机的设计阶段,准确预测和精确分析铁损非常重要。为了准确地预测铁损,本文提出了一个分段铁损模型,其参数会随磁通密度的幅度和频率而变化,并且考虑到磁性材料的非线性和非线性,在经典铁损模型中引入了两个附加的磁通密度项。谐波场。使用此模型,可以计算出逆变器供电的5.5kW感应电动机的铁损。结果揭示了定子和转子铁心中的磁滞和涡流损耗的分布特征,并获得了由谐波场引起的附加铁损的特性。通过比较不同电源电压和开关频率下的空载铁损的预测值和实测值,对所提出的模型和分析结果进行了验证。

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