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Exploiting the T(x) function in fast hysteresis models for transient circuit simulations

机译:在快速磁滞模型中利用T(x)函数进行瞬态电路仿真

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Purpose The purpose of this paper is to investigate an alternative to established hysteresis models. Design/methodology/approach Different mathematical representations of the magnetic hysteresis are compared and some differences are briefly discussed. After this, the application of the T(x) function is presented and an inductor model is developed. Implementation details of the used transient circuit simulator code are further discussed. From real measurement results, parameters for the model are extracted. The results of the final simulation are finally discussed and compared to measurements. Findings The T(x) function possesses a fast mathematical formulation with very good accuracy. It is shown that this formulation is very well suited for an implementation in transient circuit simulator codes. Simulation results using the developed model are in very good agreement with measurements. Research limitations/implications - For the purpose of this paper, only soft magnetic materials were considered. However, literature suggests, that the T(x) function can be extended to hard magnetic materials. Investigations on this topic are considered as future work. Originality/value While the mathematical background of the T(x) function is very well presented in the referenced papers, the application in a model of a real device is not very well discussed yet. The presented paper is directly applicable to typical problems in the field of power electronics.
机译:目的本文的目的是研究已建立的磁滞模型的替代方法。设计/方法/方法比较了磁滞的不同数学表示形式,并简要讨论了一些差异。此后,介绍了T(x)函数的应用并开发了电感器模型。进一步讨论了所使用的瞬态电路仿真器代码的实现细节。从实际的测量结果中,提取出模型的参数。最后讨论了最终模拟的结果,并将其与测量结果进行了比较。结果T(x)函数具有非常精确的快速数学公式。结果表明,该公式非常适合瞬态电路仿真器代码的实现。使用开发的模型进行的仿真结果与测量结果非常吻合。研究限制/意义-出于本文的目的,仅考虑软磁材料。但是,文献表明,T(x)函数可以扩展到硬磁材料。关于此主题的调查被认为是未来的工作。独创性/价值尽管在参考文献中很好地介绍了T(x)函数的数学背景,但是在实际设备模型中的应用还没有得到很好的讨论。提出的论文直接适用于电力电子领域的典型问题。

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