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Image processing method using phase-shifted fringe patterns and curve fitting

机译:使用相移条纹图案和曲线拟合的图像处理方法

摘要

A contour measurement system determines three dimensional surface information of an object using a projection moiré technique to obtain a single fringe pattern that is analyzed using a phase-shift image processing method. A grating is projected onto the object and the reflected fringe pattern is recorded by a camera and stored digitally as an array of pixels. An estimated fringe spacing is then determined for each pixel. Using the estimated fringe spacings, four phase-shifted fringe patterns are generated by correlation integration and then used in a phase calculation to obtain wrapped phase information for the object. This phase information is then unwrapped and normalized, producing a set of data points representative of the unwrapped phase information. Noise suppression using pattern reconstruction and smoothing can be utilized at this point to improve the signal to noise ratio. Thereafter, updated estimated spacings are determined for each data point using a curve fitting function such as a localized least squares fit. The system then performs one or more additional iterations of the correlation integration, phase calculation, unwrapping, noise suppression, and fringe spacing update steps, each time using the newest updated estimated spacing in the correlation integration. After the final iteration, the unwrapped phase information is demodulated and used to calculate the three dimensional coordinates of points on the object surface. A fractional pixel analysis technique is also disclosed for use in the correlation integration and updated estimated spacing calculations.
机译:轮廓测量系统使用投影波纹来确定物体的三维表面信息。使用相移图像处理方法分析单个条纹图案的技术。光栅被投射到物体上,反射的条纹图案被照相机记录下来,并以像素阵列的形式数字存储。然后为每个像素确定估计的条纹间隔。使用估计的条纹间隔,通过相关积分生成四个相移条纹图案,然后将其用于相位计算中,以获取对象的包裹相位信息。然后对该相位信息进行解包和归一化,从而生成代表解包相位信息的一组数据点。在这一点上,可以利用使用模式重构和平滑的噪声抑制来提高信噪比。此后,使用曲线拟合函数(例如局部最小二乘拟合)为每个数据点确定更新的估计间隔。然后,系统每次使用相关积分中的最新更新估计间距,执行相关积分,相位计算,展开,噪声抑制和边缘间距更新步骤的一个或多个其他迭代。在最终迭代之后,解包的相位信息将被解调,并用于计算对象表面上点的三维坐标。还公开了分数像素分析技术,以用于相关积分和更新的估计间隔计算中。

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