首页> 外文会议>Videometrics >Three-dimensional object tracking from range images using sine wave coding and Fourier transform
【24h】

Three-dimensional object tracking from range images using sine wave coding and Fourier transform

机译:使用正弦波编码和傅立叶变换从距离图像进行三维目标跟踪

获取原文
获取原文并翻译 | 示例

摘要

Abstract: An efficient method for tracking the attitude and translation of an object from a sequence of dense range images is demonstrated. The range data is sine encoded and then Fourier transformed. By this process, planar surfaces in the image produce distinctive peaks in the FT plane; the position of a peak provides a direct measure of the normal of the plane. By tracking the position of these peaks, the orientation of a known object can be tracked directly. The Fourier transform can also be used for segmentation. After computing and undoing the rotation, the translation is obtained by measuring the centroid of the segmented planar surfaces. The object must present at least three planar surfaces, for determining absolute orientation and translation. All computations are closed form. The integrative nature of the Fourier transform is very effective in attenuating the effect of noise and outliers. Results of tracking an object in a simulated range image sequence show high accuracy potential (0.2 deg. in orientation and 0.5% rms error in translation with respect to the dimension of the object). The method promises real-time (video rate) performance with the addition of accelerator hardware for computing the Fourier transform. The approach is well suited for dynamic robotic vision applications. Furthermore, the translation invariance of the Fourier transform essentially decouples the rotational and translational components of the motion, this contributes to the tracking performance.!11
机译:摘要:展示了一种从一系列密集范围图像中跟踪对象姿态和平移的有效方法。对范围数据进行正弦编码,然后进行傅立叶变换。通过此过程,图像中的平面会在FT平面中产生明显的峰;峰的位置可以直接测量平面的法线。通过跟踪这些峰的位置,可以直接跟踪已知对象的方向。傅里叶变换也可以用于分割。在计算并取消旋转之后,通过测量分段平面的质心来获得平移。该对象必须呈现至少三个平面,以确定绝对方向和平移。所有计算均为封闭形式。傅里叶变换的积分性质在减弱噪声和离群值的影响方面非常有效。在模拟的范围图像序列中跟踪对象的结果显示出高精度的潜力(相对于对象的尺寸,方向为0.2度,平移时的均方根误差为0.5%)。该方法通过添加用于计算傅立叶变换的加速器硬件,保证了实时(视频速率)性能。该方法非常适合动态机器人视觉应用。此外,傅立叶变换的平移不变性实质上使运动的旋转分量和平移分量解耦,这有助于跟踪性能。11

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号