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Estimation of the Dynamic Properties of Non-linear Packaging Materials Using a Reverse Multiple Input/Single Output Based Approach

机译:基于反向多输入/单输出的方法估计非线性包装材料的动力学特性

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During the distribution phase, packaged consignments are exposed to a variety of environmental hazards (such as vibrations) that, if excessively severe, may cause damage to or even destroy the product. Structural deterioration can be tracked by monitoring variations in the packaging system's modal parameters, particularly its natural frequency (stiffness). Natural frequency estimates are often extracted using a least-squares regression curve fit, applied to an estimate of the system's frequency response function (FRF). FRF estimates are generally obtained using the Fourier transform with a single input and single output (SISO). This approach is suitable for many applications; however, as the non-linearity of the system under analysis increases, the ability of this technique to accurately monitor changes in the system will decrease. In addition, when the excitation to the non-linear system is varied (increased or decreased amplitude), a SISO-based approach may indicate a shift in natural frequency (as a result of the varied input) even though no change in the condition of the system has occurred. This paper discusses an approach that is designed to separate the linear component of the system's FRF using a reverse multiple input/single output (RMISO) algorithm. Such separation will allow traditional modal parameter extraction (curve fitting) techniques to be used to monitor the condition of non-linear systems. The paper presents the results of experiments in which expanded polystyrene samples were subjected to broad-band random base excitation with a free-moving load placed atop the cushion sample. Continuous acceleration measurements of the vibration table and the free-moving load were used to compute the FRFs of the cushions, and the differences between a conventional (SISO) approach and the proposed RMISO-based parameter extraction technique were evaluated.
机译:在分发阶段,包装的托运货物会遭受各种环境危害(例如振动),如果危害太大,则可能导致产品损坏甚至毁坏。可以通过监视包装系统的模态参数(尤其是其固有频率(刚度))的变化来跟踪结构的恶化。通常使用最小二乘回归曲线拟合提取自然频率估算值,并将其应用于系统的频率响应函数(FRF)的估算值。通常使用具有单个输入和单个输出(SISO)的傅里叶变换来获得FRF估计。这种方法适用于许多应用。但是,随着所分析系统的非线性度的增加,该技术准确监视系统变化的能力将降低。另外,当对非线性系统的激励发生变化(幅度增加或减小)时,基于SISO的方法可能会指示自然频率的变化(由于变化的输入),即使条件不发生变化也是如此。系统已经发生。本文讨论了一种方法,该方法旨在使用反向多输入/单输出(RMISO)算法来分离系统FRF的线性分量。这种分离将允许使用传统的模态参数提取(曲线拟合)技术来监视非线性系统的状况。本文介绍了实验结果,其中对膨胀的聚苯乙烯样品进行了宽带随机基础激发,并在垫子样品上方施加了自由移动的载荷。使用振动台的连续加速度测量值和自由移动的载荷来计算垫子的FRF,并评估了传统(SISO)方法和基于RMISO的参数提取技术之间的差异。

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