文件名称:position
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基于单目手眼相机和激光测距仪,提出了一种尺寸未知的空间矩形平面的位姿测量算法。该算法不需要知道矩形平面
的G 个顶点的物体坐标,只需要知道它们的图像坐标、激光点的图像坐标和激光测距结果,就能够计算出尺寸未知空间矩形平
面在相机坐标系下的位姿,并且计算出矩形平面的尺寸。通过建立单目手眼相机和激光测距仪的数学模型,对该算法进行了验
证。实验结果表明,该算法是有效的,可以应用于机器人对空间物体的跟踪、定位以及抓取。-Monocular-based hand-eye cameras and laser range finder, a size of an unknown two-dimensional rectangular space Pose measurement algorithm. The algorithm does not need to know the G flat rectangular object vertex coordinates, they only need to know the image coordinates, image coordinates of laser points and the laser ranging results, we can calculate the size of the unknown space rectangular plane in the camera coordinate system bit posture, and to calculate the size of rectangular plane. Through the establishment of monocular hand-eye cameras and laser range finder of the mathematical model, the algorithm is verified. Experimental results show that the algorithm is effective, can be applied to the robot on the space object tracking, positioning, and crawling.
的G 个顶点的物体坐标,只需要知道它们的图像坐标、激光点的图像坐标和激光测距结果,就能够计算出尺寸未知空间矩形平
面在相机坐标系下的位姿,并且计算出矩形平面的尺寸。通过建立单目手眼相机和激光测距仪的数学模型,对该算法进行了验
证。实验结果表明,该算法是有效的,可以应用于机器人对空间物体的跟踪、定位以及抓取。-Monocular-based hand-eye cameras and laser range finder, a size of an unknown two-dimensional rectangular space Pose measurement algorithm. The algorithm does not need to know the G flat rectangular object vertex coordinates, they only need to know the image coordinates, image coordinates of laser points and the laser ranging results, we can calculate the size of the unknown space rectangular plane in the camera coordinate system bit posture, and to calculate the size of rectangular plane. Through the establishment of monocular hand-eye cameras and laser range finder of the mathematical model, the algorithm is verified. Experimental results show that the algorithm is effective, can be applied to the robot on the space object tracking, positioning, and crawling.
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position.pdf
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