3D thermal mapping of building interiors using an RGB-D and thermal camera

Stephen Vidas, Peyman Moghadam, M. Bosse
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引用次数: 143

Abstract

The building sector is the dominant consumer of energy and therefore a major contributor to anthropomorphic climate change. The rapid generation of photorealistic, 3D environment models with incorporated surface temperature data has the potential to improve thermographic monitoring of building energy efficiency. In pursuit of this goal, we propose a system which combines a range sensor with a thermal-infrared camera. Our proposed system can generate dense 3D models of environments with both appearance and temperature information, and is the first such system to be developed using a low-cost RGB-D camera. The proposed pipeline processes depth maps successively, forming an ongoing pose estimate of the depth camera and optimizing a voxel occupancy map. Voxels are assigned 4 channels representing estimates of their true RGB and thermal-infrared intensity values. Poses corresponding to each RGB and thermal-infrared image are estimated through a combination of timestamp-based interpolation and a predetermined knowledge of the extrinsic calibration of the system. Raycasting is then used to color the voxels to represent both visual appearance using RGB, and an estimate of the surface temperature. The output of the system is a dense 3D model which can simultaneously represent both RGB and thermal-infrared data using one of two alternative representation schemes. Experimental results demonstrate that the system is capable of accurately mapping difficult environments, even in complete darkness.
使用RGB-D和热像仪对建筑内部进行三维热成像
建筑部门是能源的主要消费者,因此是拟人化气候变化的主要贡献者。快速生成具有表面温度数据的逼真的3D环境模型有可能改善建筑能效的热成像监测。为了实现这一目标,我们提出了一种将距离传感器与热红外摄像机相结合的系统。我们提出的系统可以生成具有外观和温度信息的密集3D环境模型,并且是第一个使用低成本RGB-D相机开发的此类系统。所提出的流水线依次处理深度图,形成深度相机的持续姿态估计,并优化体素占用图。体素被分配4个通道,表示其真实RGB和热红外强度值的估计。每个RGB和热红外图像对应的姿态通过基于时间戳的插值和系统外部校准的预定知识的组合来估计。然后使用光线投射对体素进行着色,以使用RGB表示视觉外观,并估计表面温度。系统的输出是一个密集的3D模型,它可以同时表示RGB和热红外数据,使用两种替代的表示方案之一。实验结果表明,即使在完全黑暗的环境中,该系统也能准确地绘制困难环境的地图。
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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