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Excitation power quantities in phase resonance testing of nonlinear systems with phase-locked-loop excitation

机译:具有锁相环激励的非线性系统的相共振测试中的激励功率量

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摘要

Phase resonance testing is one method for the experimental extraction of nonlinear normal modes. This paper proposes a novel method for nonlinear phase resonance testing. Firstly, the issue of appropriate excitation is approached on the basis of excitation power considerations. Therefore, power quantities known from nonlinear systems theory in electrical engineering are transferred to nonlinear structural dynamics applications. A new power-based nonlinear mode indicator function is derived, which is generally applicable, reliable and easy to implement in experiments. Secondly, the tuning of the excitation phase is automated by the use of a Phase-Locked-Loop controller. This method provides a very user-friendly and fast way for obtaining the backbone curve. Furthermore, the method allows to exploit specific advantages of phase control such as the robustness for lightly damped systems and the stabilization of unstable branches of the frequency response. The reduced tuning time for the excitation makes the commonly used free-decay measurements for the extraction of backbone curves unnecessary. Instead, steady-state measurements for every point of the curve are obtained. In conjunction with the new mode indicator function, the correlation of every measured point with the associated nonlinear normal mode of the underlying conservative system can be evaluated. Moreover, it is shown that the analysis of the excitation power helps to locate sources of inaccuracies in the force appropriation process. The method is illustrated by a numerical example and its functionality in experiments is demonstrated on a benchmark beam structure.
机译:相共振测试是一种用于非线性正常模式实验提取的方法。本文提出了一种非线性相位共振测试的新方法。首先,基于激励功率的考虑来探讨适当激励的问题。因此,从电气工程中的非线性系统理论已知的功率量将转移到非线性结构动力学应用中。推导了一种新的基于功率的非线性模式指示函数,该函数通常适用,可靠且易于在实验中实现。其次,通过使用锁相环控制器来自动调整激励相位。此方法提供了一种非常用户友好且快速的方法来获取主干曲线。此外,该方法允许利用相位控制的特定优点,例如对轻阻尼系统的鲁棒性和频率响应的不稳定分支的稳定性。减少了激励的调谐时间,因此不需要用于提取主干曲线的常用自由衰减测量。取而代之的是,获得曲线每个点的稳态测量值。结合新的模式指示器功能,可以评估每个测量点与基础保守系统的关联非线性法线模式的相关性。此外,已表明,对激励功率的分析有助于找到力分配过程中不准确的根源。通过数值示例说明了该方法,并在基准光束结构上演示了其在实验中的功能。

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