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Range and egomotion estimation from compound photodetector arrays with parallel optical axis using optical flow techniques

机译:使用光流技术从具有平行光轴的复合光电探测器阵列估计距离和自我运动

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摘要

This paper describes an application for arrays of narrow-field-of-view sensors with parallel optical axes. These devices exhibit some complementary characteristics with respect to conventional perspective projection or angular projection imaging devices. Conventional imaging devices measure rotational egomotion directly by measuring the angular velocity of the projected image. Translational egomotion cannot be measured directly by these devices because the induced image motion depends on the unknown range of the viewed object. On the other hand, a known translational motion generates image velocities which can be used to recover the ranges of objects and hence the three-dimensional (3D) structure of the environment. A new method is presented for computing egomotion and range using the properties of linear arrays of independent narrow-field-of-view optical sensors. An approximate parallel projection can be used to measure translational egomotion in terms of the velocity of the image. On the other hand, a known rotational motion of the paraxial sensor array generates image velocities, which can be used to recover the 3D structure of the environment. Results of tests of an experimental array confirm these properties.
机译:本文描述了具有平行光轴的窄视野传感器阵列的应用。这些设备相对于常规透视投影或角投影成像设备表现出一些互补的特性。常规的成像设备通过测量投影图像的角速度直接测量旋转运动。这些设备无法直接测量平移自我运动,因为诱发的图像运动取决于被观察物体的未知范围。另一方面,已知的平移运动产生图像速度,该图像速度可用于恢复物体的范围,从而恢复环境的三维(3D)结构。提出了一种利用独立的窄视场光学传感器的线性阵列特性计算自我运动和运动距离的新方法。可以使用近似平行投影来根据图像的速度来测量平移自我运动。另一方面,近轴传感器阵列的已知旋转运动会生成图像速度,该图像速度可用于恢复环境的3D结构。实验阵列的测试结果证实了这些特性。

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  • 来源
    《Applied optics》 |2014年第3期|共8页
  • 作者

    J. S. Chahl;

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  • 正文语种 eng
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