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Incoherent optical generalized Hough transform: pattern recognition and feature extraction applications

机译:非相干光学广义霍夫变换:模式识别和特征提取应用

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摘要

Pattern recognition and feature extraction are image processing applications of great interest in defect inspection and robot vision among others. In comparison to purely digital methods, the attractiveness of optical processors for pattern recognition lies in their highly parallel operation and real-time processing capability. This work presents an optical implementation of the generalized Hough transform (GHT), a well-established technique for recognition of geometrical features in binary images. Detection of a geometric feature under the GHT is accomplished by mapping the original image to an accumulator space; the large computational requirements for this mapping make the optical implementation an attractive alternative to digital-only methods. We explore an optical setup where the transformation is obtained, and the size and orientation parameters can be controlled, allowing for dynamic scale and orientation-variant pattern recognition. A compact system for the above purposes results from the use of an electrically tunable lens for scale control and a pupil mask implemented on a high-contrast spatial light modulator for orientation/shape variation of the template. Real-time can also be achieved. In addition, by thresholding of the GHT and optically inverse transforming, the previously detected features of interest can be extracted.
机译:模式识别和特征提取是图像处理应用程序,尤其在缺陷检查和机器人视觉方面引起了极大的兴趣。与纯数字方法相比,光学处理器对模式识别的吸引力在于其高度并行的操作和实时处理能力。这项工作介绍了广义霍夫变换(GHT)的光学实现,该技术是一种公认​​的用于识别二进制图像中几何特征的技术。 GHT下几何特征的检测是通过将原始图像映射到累加器空间来完成的。该映射的大量计算需求使光学实现成为仅数字方法的有吸引力的替代方案。我们探索获得转换的光学装置,并且可以控制尺寸和方向参数,从而实现动态缩放和方向变化的模式识别。用于上述目的的紧凑系统是通过使用用于比例控制的电可调透镜和在高对比度空间光调制器上实现的光瞳掩模来实现模板的方向/形状变化而实现的。实时性也可以实现。另外,通过对GHT进行阈值化和光学逆变换,可以提取先前检测到的感兴趣特征。

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