Rail Sensor: A Mobile Lidar System for 3D Archiving the Bas-reliefs in Angkor Wat

Q1 Computer Science
Bo Zheng, Takeshi Oishi, K. Ikeuchi
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引用次数: 11

Abstract

This paper presents a mobile Lidar system for efficiently and accurately capturing the 3D shape of the Bas-reliefs in Angkor Wat. The sensor system consists of two main components: 1) a panoramic camera and 2) a 2D 360-degree laser line scanner, which moves slowly on the rails parallel to the reliefs. In this paper, we first propose a new but simple method to accurately calibrate the panoramic camera to the 2D laser scan lines. Then the sensor motion can be estimated from the sensor-fused system using the 2D/3D features tracking method. Furthermore, to reduce the drifting error of sensor motion we adopt bundle adjustment to globally optimize and smooth the moving trajectories. In experiments, we demonstrate that our moving Lidar system achieves substantially better performance for accuracy and efficiency in comparison to the traditional stop-and-go methods.
轨道传感器:用于吴哥窟浅浮雕3D存档的移动激光雷达系统
本文介绍了一种移动激光雷达系统,用于高效、准确地捕捉吴哥窟浅浮雕的三维形状。传感器系统由两个主要组件组成:1)一个全景摄像机和2)一个2D 360度激光线扫描仪,它在平行于浮雕的轨道上缓慢移动。本文首先提出了一种新的、简单的方法来精确标定全景相机的二维激光扫描线。然后利用2D/3D特征跟踪方法从传感器融合系统中估计传感器运动。此外,为了减小传感器运动漂移误差,采用束调整方法对运动轨迹进行全局优化和平滑。在实验中,我们证明了与传统的走走停停方法相比,我们的移动激光雷达系统在精度和效率方面取得了显着提高。
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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来源期刊
IPSJ Transactions on Computer Vision and Applications
IPSJ Transactions on Computer Vision and Applications Computer Science-Computer Vision and Pattern Recognition
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