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Identification of magnetic aftereffect model parameters: comparison of experiment and simulations

机译:磁性后效应模型参数的识别:实验与仿真的比较

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摘要

Previously, several aftereffect models were proposed in which Preisach type hysteresis transducers are driven by stochastic inputs. Such inputs model random thermal perturbations which are the source of aftereffect phenomena. In this article, we compare experimental and numerical simulation results for the first time in order to verify the proposed models, and present an identification procedure to determine aftereffect model parameters. Numerical simulations of the aftereffect model show the well known log t-type decay in magnetization whose rate reaches a maximum near the coercive field. Comparison of these with experimental results from /spl gamma/-Fe/sub 2/O/sub 3/ recording media show excellent agreement. Based on this comparison, we propose a practical procedure to identify the stochastic parameters of the aftereffect model.
机译:以前,提出了几种后效应模型,其中Preisach型磁滞换能器由随机输入驱动。这些输入对随机热扰动建模,这是后效应现象的根源。在本文中,我们首次比较了实验结果和数值模拟结果,以验证所提出的模型,并提出了确定后效模型参数的识别程序。后效应模型的数值模拟显示了众所周知的磁化强度的log t型衰减,其速率在矫顽场附近达到最大值。将这些与来自/ spl gamma / -Fe / sub 2 / O / sub 3 /记录介质的实验结果进行比较,显示出极好的一致性。在此比较的基础上,我们提出了一种确定后效模型的随机参数的实用程序。

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