Interference mitigation technique for Time-of-Flight (ToF) camera

Amirul Islam, M. A. Hossain, Y. Jang
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引用次数: 12

Abstract

Time-of-Flight (ToF) camera has become an attractive source of applications in location-based services, autonomous navigation, object localization for robotic manipulation, ego-motion estimation, etc. Besides, these services demand centimeter level accuracy to provide the required services. Though ToF cameras can provide high accuracy in location-based services with high frame rates (approx. 30 fps), they are facing some problems like multipath interference (MPI), internal scattering, motion blur, etc. The interferences inherent to ToF camera can influence the measurements by several centimeters. In this paper, we formulate a model to mitigate MPI and light scattering problems through a combination of scale-invariant feature transform (SIFT) and iterative closest point (ICP). We use SIFT algorithm for image features extraction and ICP for error correction during estimation. Finally, we present simulation results to prove the scalability and flexibility of our proposed algorithm for both MPI and light scattering mitigation.
飞行时间(ToF)相机的干扰抑制技术
飞行时间(ToF)相机已成为基于位置的服务、自主导航、机器人操作的目标定位、自我运动估计等应用的一个有吸引力的来源。此外,这些服务需要厘米级的精度来提供所需的服务。虽然ToF相机可以在基于位置的服务中提供高精度的高帧率(大约为1 / 4)。但它们面临着多径干扰(MPI)、内部散射、运动模糊等问题。ToF相机固有的干扰会对测量结果产生几厘米的影响。本文提出了一种结合尺度不变特征变换(SIFT)和迭代最近点(ICP)来缓解MPI和光散射问题的模型。我们使用SIFT算法提取图像特征,并在估计过程中使用ICP算法进行误差校正。最后,我们给出了仿真结果,以证明我们提出的算法在MPI和光散射减缓方面的可扩展性和灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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