首页> 外国专利> Method and apparatus for determining binocular affine disparity and affine invariant distance between two image patterns

Method and apparatus for determining binocular affine disparity and affine invariant distance between two image patterns

机译:用于确定两个图像图案之间的双眼仿射视差和仿射不变距离的方法和设备

摘要

A method and apparatus is provided to determine affine disparity and affine invariant pattern distance from two image patterns. The method formulates the problem of determining affine disparity and affine invariant distances between two image patterns as one of finding an affine transform for an adjustable hypercolumn (HC) reference frame that maximally compensates the affine difference of the two image patterns. The image HC-coding and the difference vector is computed from two image patterns using specific orientation (SO) simple cell receptive fields employed in an HC-reference system. The Lie derivative of the difference vector is computed from image patterns using Lie germs. In accordance with one aspect of the invention, the affine transform that maximally compensates the affine difference between two image patterns is found by a gradient system wherein the gradient is calculated from the difference vector and its Lie derivatives. A closed loop adaptive HC- reference frame network is provided to extract binocular affine disparity using an energy minimization technique in a manner which permits for coincidental binocular fusion of the images in the HC-coding and determination of affine invariant pattern distance in general.
机译:提供了一种方法和装置,用于从两个图像图案确定仿射差异和仿射不变图案距离。该方法提出了确定两个图像图案之间的仿射视差和仿射不变距离的问题,作为寻找最大程度地补偿两个图​​像图案的仿射差异的可调超柱(HC)参考系的仿射变换之一。使用HC参考系统中使用的特定方向(SO)简单细胞接受场,根据两个图像模式计算图像HC编码和差异矢量。差异向量的Lie导数是使用Lie细菌根据图像模式计算得出的。根据本发明的一个方面,通过梯度系统找到最大程度地补偿两个图​​像图案之间的仿射差异的仿射变换,其中从差矢量及其Lie导数计算出梯度。提供一种闭环自适应HC参考帧网络以使用能量最小化技术提取双眼仿射视差,该方式允许在HC编码中图像的双眼双眼融合并通常确定仿射不变图案距离。

著录项

  • 公开/公告号US5911035A

    专利类型

  • 公开/公告日1999-06-08

    原文格式PDF

  • 申请/专利权人 TSAO;THOMAS;

    申请/专利号US19950420762

  • 发明设计人 THOMAS TSAO;

    申请日1995-04-12

  • 分类号G06F15/18;

  • 国家 US

  • 入库时间 2022-08-22 02:08:00

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