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US Patent 10883817 Method for full-field measurement using dynamic laser doppler imaging

Patent 10883817 was granted and assigned to Beijing Jiaotong University on January, 2021 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
Beijing Jiaotong University
Beijing Jiaotong University
Current Assignee
Beijing Jiaotong University
Beijing Jiaotong University
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10883817
Date of Patent
January 5, 2021
Patent Application Number
16324181
Date Filed
October 19, 2016
Patent Citations Received
‌
US Patent 11561081 Method for full-field measurement using dynamic laser doppler imaging
Patent Primary Examiner
‌
Jonathan M Hansen
Patent abstract

A method for full-field measurement using Doppler imaging, comprising the following steps: turning on a laser and adjusting the laser; adjusting a spatial filter to obtain circular laser spots having uniform intensity distribution; adjusting a quarter-wave plate and a whole polarizer in a system, and requiring two beams in a reference object and a measured object having different frequencies and perpendicular polarization directions; applying slight pressure to the measured object, setting a charge coupled device (CCD) camera into a continuous acquisition mode, observing interference fringes, and adjusting a light path so that the fringes are clear and visible; setting the sampling frequency, sampling time, captured image format and resolution size of the CCD camera; turning on a lithium niobate crystal drive power switch to produce a heterodyne carrier frequency; applying continuous equal pushing force to the measured object by means of piezoelectric ceramics (PZT) so as to make the measured object produce continuous bending deformation; controlling the CCD camera to sample using a computer, and collecting a set of time series light interference images along with the continuous deformation of the measured object; and processing the time series light intensity interference image to obtain a three-dimensional data module comprising continuous deformation of the measured objects distributed in time and space.

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