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首页> 外文期刊>Mechanical systems and signal processing >Operational modal analysis of a rotating structure under ambient excitation using a tracking continuously scanning laser Doppler vibrometer system
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Operational modal analysis of a rotating structure under ambient excitation using a tracking continuously scanning laser Doppler vibrometer system

机译:使用跟踪连续扫描激光多普勒振动计系统在环境励磁下运行模态分析

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A continuously scanning laser Doppler vibrometer (CSLDV) system is capable of rapidly obtaining spatially dense vibration measurement by continuously sweeping its laser spot along a path on a structure surface. This paper presents a new operational modal analysis (OMA) method for a rotating structure based on a rigorous rotating beam vibration theory, an image processing method, and a data processing method called the lifting method. A novel tracking CSLDV (TCSLDV) system was developed in this work to track and scan a rotating structure, and the real-time position of the rotating structure can be determined by image processing so that the TCSLDV system is capable of tracking a time-varying scan path on the rotating structure. The lifting method can transform raw TCSLDV measurement into measurements at multiple virtual measurement points as if they were measured by transducers attached to these measurement points. Modal parameters of the rotating structure with a constant speed, including damped natural frequencies, undamped mode shapes, and modal damping ratios, and operating deflection shapes (ODSs) of the structure with a constant or prescribed time-varying rotation speed can be determined by calculating and analyzing correlation functions with non-negative time delays among measurements at virtual measurement points. Experimental investigation is conducted using the TCSLDV system to study the OMA method with which modal parameters and ODSs of a rotating fan blade with different constant speeds, as well as an ODS of the rotating fan blade with a non-constant speed, are successfully estimated.
机译:连续扫描的激光多普勒振动计(CSLDV)系统能够通过沿着结构表面上的路径连续扫描其激光点来快速获得空间密集的振动测量。本文介绍了一种基于严格旋转梁振动理论,图像处理方法的旋转结构的新操作模态分析(OMA)方法,以及称为提升方法的数据处理方法。在这项工作中开发了一种新颖的跟踪CSLDV(TCSLDV)系统,以跟踪和扫描旋转结构,并且旋转结构的实时位置可以通过图像处理来确定,使得TCSLDV系统能够跟踪时变形旋转结构上的扫描路径。提升方法可以将原始TCSLDV测量变换为多个虚拟测量点的测量,就像通过附着到这些测量点的换能器测量它们。通过计算,可以通过计算来确定具有恒定速度的恒定速度的旋转结构,包括阻尼的自然频率,透明的自然频率,透明模式形状和模态阻尼比,以及具有恒定或规定的时变旋转速度的操作偏转形状(ODS)在虚拟测量点处测量中的测量中的非负时间延迟分析相关函数。使用TCSLDV系统进行实验研究,研究了具有不同恒定速度的旋转风扇叶片的模态参数和ODS的OMA方法,以及具有非恒定速度的旋转风扇叶片的ODS。

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