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Analysis for center deviation of circular target under perspective projection

机译:透视投影下圆形目标中心偏移分析

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Purpose Accurate feature localization is a fundamental problem in computer vision and visual measurement. In a perspective projection model of the camera, the projected center of a spatial circle and the center of the projection ellipse are not identical. This paper aims to show how to locate the real projection center precisely in the perspective projection of a space circle target. Design/methodology/approach By analyzing the center deviation caused by projection transformation, a novel method is presented to precisely locate the real projection center of a space circle using projective geometry. Solution distribution of the center deviation is analyzed, and the quadratic equation for determining the deviation is derived by locating vanishing points. Finally, the actual projected center of the circular target is achieved by solving the deviation quadratic equations. Findings The procedures of the author's method are simple and easy to implement. Experimental data calculated that maximum deviation occurs at approximately between 3 pi/10 and 2 pi/5 of the angle between the projection surface and the space target plane. The absolute reduction in error is about 0.03 pixels; hence, it is very significant for a high-accuracy solution of the position of the space circle target by minimizing systematic measurement error of the perspective projection. Originality/value The center deviation caused by the space circle projection transformation is analyzed, and the detailed algorithm steps to locate the real projection center precisely are described.
机译:目的准确的特征定位是计算机视觉和视觉测量中的基本问题。在照相机的透视投影模型中,空间圆的投影中心与投影椭圆的中心不同。本文旨在展示如何在空间圆目标的透视投影中精确定位真实的投影中心。设计/方法/方法通过分析投影变换引起的中心偏差,提出了一种使用投影几何来精确定位空间圆的真实投影中心的新方法。分析中心偏差的解分布,并通过确定消失点来导出用于确定偏差的二次方程。最后,通过求解偏差二次方程来获得圆形目标的实际投影中心。结果作者方法的过程简单易行。实验数据计算得出,最大偏差发生在投影表面和空间目标平面之间的角度的大约3 pi / 10和2 pi / 5之间。误差的绝对减少约为0.03像素;因此,通过最小化透视投影的系统测量误差,对于高精度解决空间圆目标的位置非常重要。创意/值分析了由空间圆投影变换引起的中心偏差,并描述了精确定位实际投影中心的详细算法步骤。

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