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A Novel Low Frequency Vibration Measurement Method Based on Single Camera

机译:一种基于单摄像头的新型低频振动测量方法

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In recent years, low frequency vibration measurement is being widely concerned in many applications, because low frequency vibration usually introduces a strong influence. The low frequency vibration is commonly measured by the laser interferometry, requiring a complicated system and a high cost laser interferometer, and its flexibility in field vibration measurement is poor; or the method using vibration transducer, requiring a transducer with known sensitivity, and its measurement precision is not high. In this paper, we propose a novel method based on single camera, which achieves low frequency vibration measurement via collecting and processing sufficient frame sequence images. The proposed method is compared with the heterodyne interferometry by measuring the vibration displacements of a long-stroke shaker simultaneously. Experimental results show the proposed method realizes <1% vibration displacement measurement precision at frequencies between 0.05 Hz-5 Hz.
机译:近年来,低频振动测量在许多应用中广泛关注,因为低频振动通常会引入强烈影响。低频振动通常通过激光干涉测量测量,需要复杂的系统和高成本的激光干涉仪,其在场振动测量中的灵活性差;或使用振动传感器的方法,需要具有已知灵敏度的换能器,其测量精度不高。在本文中,我们提出了一种基于单个摄像机的新方法,通过收集和处理足够的帧序列图像来实现低频振动测量。通过同时测量长行程振荡器的振动位移,将所提出的方法与外差干涉法进行比较。实验结果表明,该方法在0.05Hz-5Hz之间的频率下实现<1%的振动位移测量精度。

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