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Nonlinear time-harmonic finite-element analysis of coupled circuits and fields in low frequency electromagnetic devices

机译:低频电磁装置中耦合电路和场的非线性时谐有限元分析

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Many electromagnetic devices operate under sinusoidal excitation, in which case a time-harmonic (TH) analysis may be applied; in particular, a TH field solution is much more economic than a time-transient field solution. Although the material nonlinearity cannot be strictly taken into account in the TH case, it determines the true operating condition of the device, together with the external circuit connections. In this paper, an efficient finite-element (FE) formulation to solve the 2D TH circuit-field (CF) problem posed by low-frequency (LF) electromagnetic devices is presented, approximately taking into account the effect of the material nonlinearity. Consideration is given to theoretical aspects that had not been previously studied: the resulting nonlinear complex equation does not possess an exact Jacobian, because one of its terms involves a nonanalytic function. This is circumvented by using pseudo-Jacobians derived from the Cauchy-Riemann expressions. Solid and filamentary conductors may be connected to external circuits of arbitrary topology using a novel Modified Nodal Analysis (MNA) approach. Methods for correcting magnetization curves and calculating the electromagnetic force are proposed. An induction motor test case is used to illustrate the capabilities of the formulation, and the numerical results are compared with those of a validated commercial package.
机译:许多电磁设备在正弦激励下工作,在这种情况下,可能会应用时谐(TH)分析。特别是TH现场解决方案比时间瞬态现场解决方案经济得多。尽管在TH情况下不能严格考虑材料的非线性,但它决定了器件的真实工作条件以及外部电路连接。在本文中,提出了一种有效的有限元(FE)公式,用于解决低频(LF)电磁设备带来的二维TH电路场(CF)问题,并大致考虑了材料非线性的影响。考虑到以前没有研究过的理论方面:所得的非线性复方程不具有精确的雅可比行列式,因为它的一项涉及非解析函数。通过使用派生自Cauchy-Riemann表达式的伪Jacobian来避免这种情况。固体和丝状导体可以使用新颖的改进型节点分析(MNA)方法连接到任意拓扑的外部电路。提出了校正磁化曲线和计算电磁力的方法。感应电动机测试案例用于说明配方的功能,并将数值结果与经过验证的商业包装进行比较。

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