Wang Zhanchao, Huang Min, Qian Lulu, Sun Yan, Lu Xiangning, Zhao Wenhao, Zhang Zixuan, Wang Guangming, Zhao Yixin
Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China.
Key Laboratory of Computational Optical Imaging Technology, Chinese Academy of Sciences, Beijing 100094, China.
Sensors (Basel). 2023 Jul 17;23(14):6454. doi: 10.3390/s23146454.
The near-space atmosphere is thin, and the atmospheric refraction and scattering on optical observation is very small, making it very suitable for wide-area and high-resolution surveillance using high-altitude balloon platforms. This paper adopts a 9344 × 7000 CMOS sensor to obtain high-resolution images, generating large-field-of-view imaging through the swing scanning of the photoelectric sphere and image stitching. In addition, a zoom lens is designed to achieve flexible applications for different scenarios, such as large-field-of-view and high-resolution imaging. The optical design results show that the camera system has good imaging quality within the focal length range of 320 mm-106.7 mm, and the relative distortion values at different focal lengths are less than 2%. The flight results indicate that the system can achieve seamless image stitching at a resolution of 0.2 m@20 km and the imaging field of view angle exceeds 33°. This system will perform other near-space flight experiments to verify its ultra-wide (field of view exceeding 100°) high-resolution imaging application.
临近空间大气稀薄,光学观测时的大气折射和散射非常小,这使得它非常适合使用高空气球平台进行广域和高分辨率监测。本文采用9344×7000的CMOS传感器来获取高分辨率图像,通过光电球的摆动扫描和图像拼接生成大视场成像。此外,设计了一款变焦镜头,以实现针对不同场景的灵活应用,如大视场和高分辨率成像。光学设计结果表明,该相机系统在320mm - 106.7mm焦距范围内具有良好的成像质量,不同焦距下的相对畸变值小于2%。飞行结果表明,该系统能够在20km处实现0.2m分辨率的无缝图像拼接,成像视场角超过33°。该系统将进行其他临近空间飞行实验,以验证其超宽(视场超过100°)高分辨率成像应用。