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Performance analysis and evaluation of direct phase measuring deflectometry

机译:直接相位测量偏转仪的性能分析和评估

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Three-dimensional (3D) shape measurement of specular objects plays an important role in intelligent manufacturing applications. Phase measuring deflectometry (PMD)-based methods are widely used to obtain the 3D shapes of specular surfaces because they offer the advantages of a large dynamic range, high measurement accuracy, full-field and noncontact operation, and automatic data processing. To enable measurement of specular objects with discontinuous and/or isolated surfaces, a direct PMD (DPMD) method has been developed to build a direct relationship between phase and depth. In this paper, a new virtual measurement system is presented and is used to optimize the system parameters and evaluate the system's performance in DPMD applications. Four system parameters are analyzed to obtain accurate measurement results. Experiments are performed using simulated and actual data and the results confirm the effects of these four parameters on the measurement results. Researchers can therefore select suitable system parameters for actual DPMD (including PMD) measurement systems to obtain the 3D shapes of specular objects with high accuracy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:镜面物体的三维(3D)形状测量在智能制造应用中起着重要作用。基于相位测量折光法(PMD)的方法被广泛用于获得镜面曲面的3D形状,因为它们具有动态范围大,测量精度高,全场和非接触操作以及自动数据处理的优点。为了能够测量具有不连续和/或隔离表面的镜面对象,已经开发了直接PMD(DPMD)方法来建立相位和深度之间的直接关系。本文提出了一种新的虚拟测量系统,该系统用于优化系统参数并评估系统在DPMD应用中的性能。分析四个系统参数以获得准确的测量结果。使用模拟和实际数据进行实验,结果证实了这四个参数对测量结果的影响。因此,研究人员可以为实际的DPMD(包括PMD)测量系统选择合适的系统参数,以高精度获得镜面物体的3D形状。 (C)2017 Elsevier Ltd.保留所有权利。

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