Infrared and Laser Engineering, Volume. 53, Issue 7, 20240056(2024)
Optical parameter optimization of star sensor for daytime star detection at different altitudes
[1] Pingchuan REN, Qi ZHOU, He JIN. Evaluation method of star sensor dynamic accuracy. Infrared and Laser Engineering, 51, 20210571-356(2022).
[3] [3] WU Zhouping. Star image signaltonoise ratio enhancement technology star centroid estimation f daytime star tracker[D]. Changsha: National University of Defense Technology, 2018: 1421. (in Chinese)
[4] Qianchneg ZHANG, Sheng ZHONG, Jingsong LYU. Optical system design of all-time star sensor with large field-of-view. Infrared and Laser Engineering, 52, 20220583(2023).
[5] Weifeng DU, Yanqing WANG, Xunjiang ZHENG. Design and verification of stray light suppression for star sensor. Acta Optica Sinica, 43, 0623001-308(2023).
[6] Qiaoyun FAN, Xiaojuan LI. Selection of optical system parameters for an all-day used star sensor. Acta Optica Sinica, 31, 1122001-26(2011).
[7] Yue PAN, Hu WANG, Nan JING. Parameter selection and optical design of all-day star sensor. Acta Photonica Sinica, 45, 0122002-157(2016).
[8] Hui ZHANG, Xiangdong ZHOU, Xinmei WANG. Current status and development of all-sky time-star sensor in near-Earth space. Acta Aeronautica et Astronautica Sinica, 41, 19-31(2020).
[9] Wenjie WANG, Guangjun ZHANG, Xinguo WEI. Modeling analysis and experimental verification for all-time star sensor. Infrared and Laser Engineering, 48, 1113001-148(2019).
[10] Wanxiang GOU, Shuai TONG, Jingyu JIA. Optimal design and experimental verification of optical response band of all-time star sensor. Infrared and Laser Engineering, 52, 20230221-255(2023).
[11] Chunlei YU, Xue LI, Bo YANG et al. Noise characteristics analysis of short wave infrared InGaAs focal plane arrays. Infrared Physics & Technology, 85, 74-80(2017).
[12] [12] HARDING E S. Astronomical magnitudes flux density at 0 m [EBOL]. (19990301) [20240531]. https:cass.ucsd.eduarchivephysicsph162mags.html.
[13] Tao ZHANG, Xinyang LI, Jianfeng LI. sCMOS real-time nonuniformity correction based on adaptive multipoint method. Opto-Electronic Engineering, 48, 83-90(2021).
[15] [15] ROGALSKI A. Next decade in infrared detects [C]Conference on Electrooptical Infrared Systems: Technology Applications XIV, 2017.
[16] [16] European Machine Vision Association. EMVA1288 R3.1 Stard f acterization of image senss cameras [S]. Europe: EMVA, 2016.
[17] [17] HUANG Yicheng. Research on key technology of fiber optic gyro strapdown inertial navigation. [D]. Hangzhou: Zhejiang University, 2020: 1012. (in Chinese)
[18] Baicheng SUN, Jie GUO, Fangyu XU. Performance test method of InGaAs near infrared detector for astronomical observation. Journal of Infrared and Millimeter Waves, 41, 1002-1008(2022).
[19] Guozhang LI, Wentao JIANG, Guoquan REN. Influence of temperature and air pressure on imaging quality of vehicle-mounted optical system. Laser & Infrared, 46, 1113-1118(2016).
[20] Yijun SHI, Ziqi XU. Optical system design of star sensor and stray light suppression technology. Infrared and Laser Engineering, 50, 20210015-253(2021).
Get Citation
Copy Citation Text
Yuanman NI, Dongkai DAI, Xingshu WANG, Zhaofa ZHOU. Optical parameter optimization of star sensor for daytime star detection at different altitudes[J]. Infrared and Laser Engineering, 2024, 53(7): 20240056
Category:
Received: Jan. 31, 2024
Accepted: --
Published Online: Aug. 9, 2024
The Author Email: DAI Dongkai (daidongkai@nudt.edu.cn)