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Application of velocity filtering to optical-flow passive ranging

机译:速度滤波在光流无源测距中的应用

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摘要

The performance of the velocity filtering method as applied to optical-flow passive ranging under real-world conditions is evaluated. The theory of the 3-D Fourier transform as applied to constant-speed moving points is reviewed, and the space-domain shift-and-add algorithm is derived from the general 3-D matched filtering formulation. The constant-speed algorithm is then modified to fit the actual speed encountered in the optical flow application, and the passband of that filter is found in terms of depth (sensor/object distance) so as to cover any given range of depths. Two algorithmic solutions for the problems associated with pixel interpolation and object expansion are developed, and experimental results are presented.
机译:评估了在实际条件下应用于光流被动测距的速度滤波方法的性能。回顾了应用于恒速运动点的3-D傅里叶变换的原理,并从通用的3-D匹配滤波公式推导了空域移位加法算法。然后修改恒速算法以适合光流应用中遇到的实际速度,并根据深度(传感器/物体距离)找到该滤波器的通带,以覆盖任何给定的深度范围。针对像素插值和目标扩展问题,提出了两种算法,并给出了实验结果。

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