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Efficient mixed-domain behavioural modelling of ferromagnetic hysteresis implemented in VHDL-AMS

机译:VHDL-AMS中实施铁磁滞后的高效混合域行为建模

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In this paper, a modified model of ferromagnetic hysteresis suitable for mixed-signal simulations in VHDL-AMS is presented. The aim of this paper is to demonstrate how a numerically stable and accurate implementation of the Jiles-Atherton model can be achieved using a 4th order Runga-Kutta integration of the derivative of magnetization with respect to the field strength (H). While most SPICE-like implementations require inconvenient integration in time to obtain the magnetization derivative, our approach is more general as it does not rely on the underlying differential equation solver for this purpose. The model addresses the non-physical situation of negative BH slopes and proposes an alternative implementation of the anhysteretic function using a polynomial approximation of the Langevin function for low signal levels and a new function with no discontinuities. Model efficiency is improved by monitoring the change in H and only activating the integration function when H changes by a specified amount.
机译:本文介绍了适用于VHDL-AMS中的混合信号模拟的铁磁滞后的修改模型。本文的目的是通过相对于场强(H)的磁化导数的第四阶Runga-Kutta集成,展示如何实现Jile-Atherton模型的数值稳定和准确的实现。虽然大多数香料样的实现需要不方便的集成时间来获得磁化衍生物,但我们的方法更为一般,因为它不依赖于此目的的底层微分方程求解器。该模型解决了负BH斜率的非物理情况,并提出了使用Langevin函数的多项式近似的中间函数的替代实现,用于低信号电平和没有不连续性的新功能。通过监视H的变化并仅在H通过指定的数量进行更改时激活积分函数来提高模型效率。

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