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Scale-invariant recognition of three-dimensional objects by use of a quasi-correlator

机译:使用准相关器对三维物体进行尺度不变识别

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摘要

A method of scale-invariant recognition of three-dimensional (3-D) objects is presented. Several images of the observed scene are recorded under white-light illumination from several different points of view and compressed into a single complex two-dimensional matrix. After filtering with a single scale-invariant filter, the resultant function is then coded into a computer-generated hologram (CGH). When this CGH is coherently illuminated, a correlation space is reconstructed in which light peaks indicate the existence and location of true targets in the tested 3-D scene. The light peaks are detectable for different sizes of the true objects, as long as they are within the invariance range of the filter. Experimental results in a complete electro-optical system are presented, and comparisons with other systems are investigated by use of computer simulation.
机译:提出了三维(3-D)对象的尺度不变识别方法。在白光照射下,从几个不同的角度记录观察到的场景的几张图像,并将其压缩为单个复杂的二维矩阵。用单个比例尺不变的滤波器进行滤波后,然后将所得函数编码为计算机生成的全息图(CGH)。当此CGH相干照亮时,将重建一个相关空间,其中光峰值指示在测试的3D场景中真实目标的存在和位置。只要在滤镜的不变范围内,就可以检测出不同大小的真实物体的光峰。给出了一个完整的电光系统的实验结果,并通过计算机仿真研究了与其他系统的比较。

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