一种通过探测光条的位置和入射角的测距方法

K. Ohtani, M. Baba
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引用次数: 5

摘要

本文提出了一种新的基于三角形的光条测距方法,该方法可以同时测量镜面物体和朗伯物体的三维形状。虽然基于三角测量的光条测距仪已经广泛应用于许多工业应用中,但通常只能用这些测距仪测量朗伯物体。为了使这种类型的测距仪应用于高光物体,需要图像传感器检测光条的入射位置和角度,而传统的图像传感器难以检测光条的入射角。因此,我们以前通过用屏蔽罩限制穿过透镜的光条的路径,使得间接检测角度成为可能。以往基于该思想的测距方法实现了高光物体的三维形状测量,但该方法获取三维形状数据耗时较长。本文设计了一种能够直接检测入射角的传感器,并利用该传感器提出了一种新的测距方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A rangefinding approach by detecting the position and the incident angle of a light-stripe
This paper describes a novel triangulation-based light stripe rangefinding approach which can measure 3-D shapes for both specular and Lambertian objects. Although triangulation-based light stripe rangefinders have been widely used for many industrial applications, generally only Lambertian objects can be measured with these rangefinders. In order to apply this type of rangefinder to specular objects, it is necessary for the image sensor to detect the incident position and the angle of the light stripe However, it is difficult to detect the incident angle of the light stripe using conventional image sensors. Thus, we previously made the indirect detection of the angle possible by limiting the path of the light stripe that passed through the lens with shield masks. While the previous rangefinding approach based on this idea realized 3-D shape measurements for specular objects, it took a long time to acquire the 3-D shape data using this approach. We here devised a sensor which has the capability of detecting the incident angle directly, and then proposed a novel rangefinding approach using this sensor.
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