2019
DOI: 10.3390/s19061368
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Vibration Detection and Motion Compensation for Multi-Frequency Phase-Shifting-Based 3D Sensors

Abstract: Phase-shifting profilometry, especially employing the multi-frequency phase-shifting method, is increasingly used for in situ 3D metrology and for the inspection of industrial parts. However, environmental vibrations cause fatal measurement errors and are inevitable in such applications. To this end, an effective and fast vibration detection and motion compensation method for multi-frequency phase-shifting-based 3D sensors is presented. The proposed method quantitatively indicates the strength of the vibration… Show more

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Cited by 11 publications
(4 citation statements)
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“…In 2019, Liya Han et al [ 101 ] studied the method of vibration compensation in the measurement environment. Vibrations have a particularly obvious influence on the phase unwrapping process of the multi-frequency phase shift method, causing the image pixels to fail to correspond.…”
Section: Multi-view Stereo Vision Measurement Methodsmentioning
confidence: 99%
“…In 2019, Liya Han et al [ 101 ] studied the method of vibration compensation in the measurement environment. Vibrations have a particularly obvious influence on the phase unwrapping process of the multi-frequency phase shift method, causing the image pixels to fail to correspond.…”
Section: Multi-view Stereo Vision Measurement Methodsmentioning
confidence: 99%
“…The displacement time history is often calculated by either employing a fixed-frame strategy or an updated-frame strategy [1,55]. The main difference between these two strategies is whether the reference frame is kept fixed or is updated when calculating the displacement for each tracked target.…”
Section: Frame Tracking Strategies and Displacement Calculationmentioning
confidence: 99%
“…The technique detected the helicopter vibration but not the man's arterial pressure [61]. Han et al [62] introduced multi-frequency phase-shifting-based (PSP) 3D sensors for the measurement of environmental vibration error. The principle of the technique is based on a stereo vision by projecting fringe patterns onto the measured body for scanning.…”
Section: Camera Based Imagingmentioning
confidence: 99%