Gazzano Olivier, Chambon Mathieu, Ferrec Yann, Druart Guillaume
DOTA, ONERA, Université Paris-Saclay, 91120 Palaiseau, France.
Sensors (Basel). 2024 Oct 2;24(19):6387. doi: 10.3390/s24196387.
Uncooled and shutterless microbolometer cameras are good candidates for infrared imaging systems installed on small satellites or small unmanned aerial vehicles: they are light and passive since no cooling system or mechanical shutter is required and they can be operated at ambient temperatures. However, the radiometric compensation has to be carefully performed to make the system compatible with applications where the radiometric accuracy of the images is mandatory. In this paper, we study the impact of the camera environment to the radiometric accuracy of the images. We propose and test hardware and software solutions to improve this accuracy and the quality of the radiometric images. We show that the radiometric calibration of the camera with our model is valid over a long time period- about 3 years-using in-door experiments.
它们重量轻且无源,因为不需要冷却系统或机械快门,并且可以在环境温度下运行。然而,必须仔细进行辐射补偿,以使系统与对图像辐射精度有严格要求的应用兼容。在本文中,我们研究了相机环境对图像辐射精度的影响。我们提出并测试了硬件和软件解决方案,以提高这种精度和辐射图像的质量。我们通过室内实验表明,使用我们的模型对相机进行的辐射校准在长达约3年的长时间内都是有效的。