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Calibration techniques for object tracking using a compound eye image sensor

机译:使用复合眼图像传感器进行对象跟踪的校准技术

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Vanishing point and Z-tranform image center calibration techniques are reported for a prototype 揷ompound-eye?camera system which can contain up to 25 "eyelets" One application of this system is to track a fast-moving object, such as a tennis ball, over a wide field of view. Each eyelet comprises a coherent fiber bundle with a small imaging lens at one end. The other ends of the fiber bundles are aligned on a plane, which is re-imaged onto a commercial CMOS camera. The design and implementation of the Dragonfleye prototype is briefly described. Calibration of the image centers of the eyelet lenses is performed using a vanishing point technique, achieving an error of approximately 0.2 pixels. An alternative technique, the Z-transform, is shown to be able to achieve similar results. By restricting the application to a two-dimensional surface, it is shown that similar accuracies can be achieved using a simple homography transformation without the need for calibrating individual eyelets. Preliminary results for object tracking between eyelets are presented, showing an error between actual and measured positions of around 3.5 mrad.
机译:消失点和Z-变换分析图像中心的校准技术被报告为原型揷ompound眼?相机系统,该系统可以包含多达25“孔眼”该系统的一个应用是跟踪快速移动的物体,如网球,在广阔的视野上。每个孔眼包括具有一端的小型成像镜头的相干纤维束。纤维束的另一端在平面上对齐,该平面被重新成像到商业CMOS相机上。简要描述了DragonFleye原型的设计和实现。使用消失点技术进行孔眼镜片的图像中心的校准,实现约0.2像素的误差。替代技术,Z变换显示能够实现类似的结果。通过将应用限制在二维表面上,示出了使用简单的相同转换可以实现类似的精度,而无需校准各个孔眼。提出了对象跟踪的初步结果,显示出在3.5Mrad约3.5周围的实际和测量位置之间的误差。

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