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Mechanical system scaling based on output only identification and mass perturbations by state projections

机译:基于输出的机械系统缩放仅通过状态投影识别和质量扰动

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In this article the authors develop a new method for input-output system parametrization based on mechanical output only identification, mass perturbations, and state projections. Based on a brief summary of mechanical model parametrization, the authors develop a central relation of reference and altered structural states based on a general system theoretic approach. By applying a state space description, the novel state projections for system scaling (SP2S) method is defined. The proposed numerical solution based on a least-squares approach follows a reordering by Kronecker product. Very importantly, applied state space parameters can be in general coordinates and the model order is not restricted (for instance to the number of measurement positions). Finally, SP2S is applied and verified based on simulated and real experimental measurements of a laboratory set-up.
机译:在本文中,作者基于机械输出仅识别,质量扰动和状态投影,开发了一种新的输入 - 输出系统参数化方法。基于机械模型参数化的简要总结,作者基于一般系统理论方法制定了参考和改变结构状态的核心关系。通过应用状态空间描述,定义了用于系统缩放(SP2S)方法的新型状态投影。基于最小二乘方法的提出的数值解决方案遵循Kronecker产品的重新排序。非常重要地,应用状态空间参数可以是常规坐标,并且模型顺序不受限制(例如,测量位置的数量)。最后,基于实验室设置的模拟和实际实验测量来应用SP2S和验证。

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