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Research on the Dynamic Hysteresis Loop Model of the Residence Times Difference (RTD)-Fluxgate

机译:停留时间差(RTD)-磁通门的动态磁滞回线模型研究

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摘要

Based on the core hysteresis features, the RTD-fluxgate core, while working, is repeatedly saturated with excitation field. When the fluxgate simulates, the accurate characteristic model of the core may provide a precise simulation result. As the shape of the ideal hysteresis loop model is fixed, it cannot accurately reflect the actual dynamic changing rules of the hysteresis loop. In order to improve the fluxgate simulation accuracy, a dynamic hysteresis loop model containing the parameters which have actual physical meanings is proposed based on the changing rule of the permeability parameter when the fluxgate is working. Compared with the ideal hysteresis loop model, this model has considered the dynamic features of the hysteresis loop, which makes the simulation results closer to the actual output. In addition, other hysteresis loops of different magnetic materials can be explained utilizing the described model for an example of amorphous magnetic material in this manuscript. The model has been validated by the output response comparison between experiment results and fitting results using the model.
机译:基于磁芯的磁滞特性,RTD-fluxgate磁芯在工作时会反复被激励场饱和。当磁通门仿真时,铁心的准确特性模型可以提供精确的仿真结果。由于理想磁滞回线模型的形状是固定的,因此无法准确反映磁滞回线的实际动态变化规则。为了提高磁通门的仿真精度,基于磁通门工作时磁导率参数的变化规律,提出了一种具有实际物理意义的参数动态滞环模型。与理想的磁滞回线模型相比,该模型考虑了磁滞回线的动态特性,从而使仿真结果更接近实际输出。另外,可以使用所描述的模型来解释不同磁性材料的其他磁滞回线,作为本手稿中非晶磁性材料的示例。该模型已通过使用该模型进行的实验结果与拟合结果之间的输出响应比较进行了验证。

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