基于改进proony方法的蜂窝纸板动态特性建模及参数辨识

Dapeng Zhu, Shisheng Zhou
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引用次数: 1

摘要

提出了一种系统辨识技术,用于蜂窝纸板系统载荷动力学模型的参数估计。将蜂窝纸板建模为具有粘弹性的线性材料,其本构律用指数遗传松弛核表示。将蜂窝纸板系统的自由响应表示为复指数和,采用改进的proony方法识别系统极点和残数,采用替换策略识别动力模型参数。制作了一个记录质量-材料系统自由响应的实验系统。最后,将参数辨识技术应用于实验数据,得到与系统相关的刚度、粘性和粘弹性参数。这些参数值随静荷载水平的变化也进行了研究。本文建立的蜂窝纸板动态性能模型和参数可为蜂窝纸板在包装中的合理使用提供理论和设计依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Honeycomb Paperboard Dynamic Properties Modeling and Parameters Identification through Use of Modified Prony Method
A system identification technique is presented for estimation of parameters associated with the dynamic model of the mass loaded honeycomb paperboard system. The honeycomb paperboard is modeled as a linear material with viscoelastic property, whose constitutive law is expressed by an exponential hereditary relaxation kernel. The free response of the mass loaded honeycomb paperboard system is expressed as the sum of complex exponentials, the system poles and residues are identified by the modified Prony method, the parameters of the dynamic model are identified by a substitution strategy. An experiment system is fabricated to record the free response of the mass-material system. Finally, the parameters identification technique is applied to the experimental data to obtain the relevant stiffness, viscous and viscoelastic parameters associated with the system. Variations in values of these parameters as function of static load level is also investigated and presented. Honeycomb paperboard dynamic properties model and the parameters presented in this paper can provide theoretical and design basis for the proper use of honeycomb paperboard in packaging.
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