Kim Hyun Myung, Kim Min Seok, Chang Sehui, Jeong Jiseong, Jeon Hae-Gon, Song Young Min
Gwangju Institute of Science and Technology, School of Electrical Engineering and Computer Science, 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61005, Korea.
SOSLAB, B-101, BI Center, GIST 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61005, Korea.
Micromachines (Basel). 2021 Nov 26;12(12):1453. doi: 10.3390/mi12121453.
The light field camera provides a robust way to capture both spatial and angular information within a single shot. One of its important applications is in 3D depth sensing, which can extract depth information from the acquired scene. However, conventional light field cameras suffer from shallow depth of field (DoF). Here, a vari-focal light field camera (VF-LFC) with an extended DoF is newly proposed for mid-range 3D depth sensing applications. As a main lens of the system, a vari-focal lens with four different focal lengths is adopted to extend the DoF up to ~15 m. The focal length of the micro-lens array (MLA) is optimized by considering the DoF both in the image plane and in the object plane for each focal length. By dividing measurement regions with each focal length, depth estimation with high reliability is available within the entire DoF. The proposed VF-LFC is evaluated by the disparity data extracted from images with different distances. Moreover, the depth measurement in an outdoor environment demonstrates that our VF-LFC could be applied in various fields such as delivery robots, autonomous vehicles, and remote sensing drones.
光场相机提供了一种在单次拍摄中捕捉空间和角度信息的强大方法。其重要应用之一是在三维深度感知中,它可以从采集的场景中提取深度信息。然而,传统光场相机存在景深较浅的问题。在此,针对中程三维深度感知应用,新提出了一种具有扩展景深的变焦光场相机(VF-LFC)。作为系统的主镜头,采用了具有四种不同焦距的变焦镜头,将景深扩展到约15米。通过考虑每个焦距在像平面和物平面中的景深来优化微透镜阵列(MLA)的焦距。通过用每个焦距划分测量区域,可在整个景深范围内进行高可靠性的深度估计。通过从不同距离的图像中提取的视差数据对所提出的VF-LFC进行评估。此外,在室外环境中的深度测量表明,我们的VF-LFC可应用于各种领域,如配送机器人、自动驾驶车辆和遥感无人机。