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Rotation ally symmetric triangulation sensor with integrated object imaging using only one 2D detector

机译:仅使用一个2D检测器的集成对象成像的旋转对称对称三角传感器

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In this paper a distance measurement sensor is introduced, equipped with two integrated optical systems, the first one for rotationally symmetric triangulation and the second one for imaging the object while using only one 2D detector for both purposes. Rotationally symmetric triangulation, introduced in [1], eliminates some disadvantages of classical triangulation sensors, especially at steps or strong curvatures of the object, wherefore the measurement result depends not any longer on the angular orientation of the sensor. This is achieved by imaging the scattered light from an illuminated object point to a centered and sharp ring on a low cost area detector. The diameter of the ring is proportional to the distance of the object. The optical system consists of two off axis aspheric reflecting surfaces. This system allows for integrating a second optical system in order to capture images of the object at the same 2D detector. A mock-up was realized for the first time which consists of the reflecting optics for triangulation manufactured by diamond turning. A commercially available appropriate small lens system for imaging was mechanically integrated in the reflecting optics. Alternatively, some designs of retrofocus lens system for larger field of views were investigated. The optical designs allow overlying the image of the object and the ring for distance measurement in the same plane. In this plane a CCD detector is mounted, centered to the optical axis for both channels. A fast algorithm for the evaluation of the ring is implemented. The characteristics, i.e. the ring diameter versus object distance shows very linear behavior. For illumination of the object point for distance measurement, the beam of a red laser diode system is reflected by a wavelength bandpath filter on the axis of the optical system in. Additionally, the surface of the object is illuminated by LED's in the green spectrum. The LED's are located on the outside rim of the reflecting optics. The scattered LED light is transmitted by the before mentioned bandpath filter and is captured by the imaging lens. A simultaneous mode, in which the ring for distance measurement is superimposed to the image of the object, and a time multiplexing mode were implemented thus demonstrating the flexibility and performance options of this approach.
机译:在本文中,介绍了一种距离测量传感器,该传感器配备了两个集成的光学系统,第一个用于旋转对称三角测量,第二个用于对物体成像,同时仅使用一个2D检测器来实现这两个目的。文献[1]中引入的旋转对称三角测量消除了传统三角测量传感器的一些缺点,尤其是在物体的台阶或强曲率下,因此测量结果不再取决于传感器的角度方向。这是通过将来自照明对象点的散射光成像到低成本区域检测器上居中且尖锐的环上来实现的。环的直径与物体的距离成正比。光学系统由两个离轴非球面反射表面组成。该系统允许集成第二光学系统,以便在同一2D检测器上捕获物体的图像。首次实现了模型化,该模型由金刚石车削制造的三角测量用反射光学系统组成。将可商购的合适的用于成像的小透镜系统机械地集成在反射光学器件中。可替代地,研究了用于更大视野的后聚焦透镜系统的一些设计。光学设计允许在同一平面上覆盖物体和环的图像以进行距离测量。在该平面上安装了一个CCD检测器,其中心位于两个通道的光轴上。实现了一种用于环评估的快速算法。特性,即环直径与物距的关系表现出非常线性的行为。为了对物体点进行照明以进行距离测量,红色激光二极管系统的光束被光学系统轴上的波长带通滤光镜反射。此外,物体的表面由绿色光谱中的LED照明。 LED位于反射光学器件的外边缘上。散射的LED光通过前面提到的带通滤波器传输,并被成像镜头捕获。实现了同时模式(其中将用于距离测量的环叠加到对象的图像上)和时分复用模式,从而证明了该方法的灵活性和性能选择。

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