精确光学接近检测器

P. Regtien
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引用次数: 10

摘要

描述了一种比率光学接近传感器,其测量接近物体与传感器之间在1cm至约10cm范围内的距离。该方法有效地降低了反射系数和物体方向的影响。该传感器可用于机器人抓手和其他需要短距离非接触式测量的应用。光学接近检测器的输出取决于目标材料的反射率。这种依赖性可以通过沿系统光轴在一定距离上使用两个接收器来减小。两个输出之间的比率与目标的反射系数和电源的强度无关。传感器系统的灵敏度和测距范围由源和探测器的几何结构和辐射特性决定。主要的设计参数是发射器和接收器光轴之间的角度以及这些光学元件之间的距离。比率输出是通过将两个接收器输出之间的差除以其中一个输出或它们的总和来实现的。为了消除环境光的影响,建议使用调制光源并同步检测接收器输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate optical proximity detector
A ratiometric optical proximity sensor which measures the distance between an approaching object and the sensor within a range of 1 cm to about 10 cm is described. With the proposed method, the influence of the reflection coefficient and the orientation of the object is strongly reduced. The sensor can be used in robot grippers and in other applications where contactless measurement of short distances is required. The output of the optical proximity detector depends on the reflectivity of the target material. This dependence can be reduced by using two receivers at some distance apart along the optical axis of the system. The ratio between the two outputs is independent of the reflection coefficient of the target and of the intensity of the power source. The sensitivity of the sensor system and the range are fixed by the geometrical configuration and the radiant properties of the source and detectors. Major design parameters are the angles between the optical axes of the transmitter and receivers and the distances between these optical components. The ratiometric output is achieved by dividing the difference between the two receiver outputs by one of the outputs or their sum. To eliminate the influence of environmental light, it is advisable to use a modulated light source and synchronous detection of the receiver outputs.<>
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