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A Combination of a 3 Step Temporal Phase Algorithm and a High Speed Interferometer System for Dynamic Profile Measurements

机译:三步时间相位算法与高速干涉仪系统的组合,用于动态轮廓测量

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This work presents the application of a temporal phase algorithm on a high speed optical interferometry vibration study. The object is a rectangular plate clamped on its four sides. The dynamic event of a complete cycle of vibration is registered by means of a high speed electronic speckle pattern interferometry system (HS ESPI). The HS ESPI system contains a CMOS camera set at 4000 frames per second leaving the shutter widely open all the time. A group of intensity patterns of interference are recorded, different sets of fringe patterns along the cycle of vibration come from the subtraction of the intensity patterns of interference and are processed by a three-frame temporal phase measurement method to recover the phase of deformation of the plate. The result is reported and is also compared with the mechanical phase described on the theory.
机译:这项工作提出了时间相位算法在高速光学干涉测量振动研究中的应用。该物体是一个夹在其四个侧面上的矩形板。完整的振动周期的动态事件是通过高速电子散斑图干涉系统(HS ESPI)记录的。 HS ESPI系统包含一个设置为每秒4000帧的CMOS摄像头,使快门始终保持打开状态。记录一组干涉强度图案,沿着振动循环的不同条纹图案集来自干涉强度图案的减法,并通过三帧时间相位测量方法进行处理,以恢复干涉的变形相位。盘子。报告结果,并将其与理论上描述的机械阶段进行比较。

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