[1] Kaisheng Zhang, Xiuqin Su, Zhilong Ye. Large relative aperture optical system design for all day star sensor. Acta Photonica Sinica, 51, 1111003(2022).
[2] Wenjie Wang, Guangjun Zhang, Xinguo Wei. Modeling analysis and experimental verification of all- time star sensor. Infrared and Laser Engineering, 48, 1113001(2019).
[3] 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).
[4] Qiancheng Zhang, Sheng Zhong, Jinsong Lv, . Design of optical system for large-field all-sky time star sensor. Infrared and Laser Engineering, 52, 20220583(2023).
[5] C González-fernández, S T Hodgkin, M J Irwin, et al. The VISTA ZYJHKs photometric system: Calibration from 2 MASS. Monthly Notices of the Royal Astronomical Society, 474, 5459-5478(2018).
[6] Weida Hu, Qing Li, Xiaoshuang Chen, . Recent progress on advanced infrared photodetectors. Acta Physica Sinica, 68, 20190281(2019).
[7] Xue Li, Haimei Gong, Xiumei Shao, . Recent advances in short wavelength infrared InGaAs focal plane arrays. Journal of Infrared and Millimeter Waves, 41, 129-138(2022).
[8] Belenkii M. Daytime stellar imager: USA, 7349804[P]. 20080325.
[9] Chunlei Yu, Haimei Gong, Xue Li, . 2 560×2 048 yuan short-wave infrared InGaAs focal plane detector (invited). Infrared and Laser Engineering, 51, 20210941(2022).
[10] Rex M, Chapin E, Devlin M J, et al. BLAST autonomous daytime star cameras [C]Groundbased Airbne Instrumentation f Astronomy, SPIE, 2006, 6269: 1093–1100.
[11] Zhu Hailong, Bin Liang, Tao Zhang, et al. Designing considerations f airbne star tracker during daytime [C]The 27th Chinese Control Decision Conference (2015 CCDC). Qingdao, China, IEEE, 2015: 4279–4283.
[12] Wenjie Wang. Optical parameters optimization for all-time star sensor. Sensors, 19, 2960(2019).
[13] D W Hughes. The introduction of absolute magnitude (1902-1922). Journal of Astronomical History and Heritage, 9, 173-179(2006).
[14] E Schulman, V C Caroline. Misconceptions about astronomical magnitudes. American Journal of Physics, 65, 1003-1007(1997).
[15] A L Cochran. Spectrophotometry with a self-scanned silicon photodiode array-II-secondary standard stars. The Astrophysical Journal Supplement Series, 45, 83-96(1981).
[16] M S Bessell. Photometric systems. International Astronomical Union Colloquium, 136, 22-39(1993).
[17] L Casagrande, D A VandenBerg. Synthetic stellar photometry – II testing the bolometric flux scale and tables of bolometric corrections for the Hipparcos/Tycho, Pan-STARRS1, SkyMapper, and JWST systems. Monthly Notices of the Royal Astronomical Society, 475, 5023-5040(2018).
[18] W Andrew, von Braun Kaspar. Revised filter profiles and zero points for broadband photometry. Publications of the Astronomical Society of the Pacific, 127, 102-125(2015).
[19] M S Bessell. The Hipparcos and Tycho photometric system passbands. Publications of the Astronomical Society of the Pacific, IOP Publishing, 112, 961(2000).
[20] S Bilir, S Ak, S Karaali, et al. Transformations between 2 MASS, SDSS and BVRI photometric systems: Bridging the near-infrared and optical. Monthly Notices of the Royal Astronomical Society, 384, 1178-1188(2008).
[21] Maíz Apellániz J. A unifm set of opticalNIR photometric zero points to be used with CHIZOS[C]The Future of Photometric, Spectrophotometric Polarimetric Stardization, 2007, 364: 227.
[22] M Bessell, S Murphy. Spectrophotometric libraries, revised photonic passbands, and zero points for UBVRI, hipparcos, and tycho photometry. Publications of the Astronomical Society of the Pacific, 124, 140-157(2012).
[23] Ruwen Wang, Pinhua Xie, Jin Xu, et al. Retrieve of water vapor column density in atmosphere based on near infrared differential optical absorption spectroscopy. Acta Optica Sinica, 39, 0201001(2019).
[24] Rogalski A. Next decade in infrared detects[C]ElectroOptical Infrared Systems: Technology Applications XIV, SPIE, 2017, 10433: 128152.
[25] Wang Wenjie, Wei Xinguo, Li Jian, et al. Noise suppression algorithm of short-wave infrared star image for daytime star sensor. Infrared Physics & Technology, 85, 382-394(2017).
[26] Xunjiang Zheng, Yongqin Huang, Xiaonan Mao, et al. Research status and key technologies of all-day star sensor. Journal of Physics: Conference Series, 1510, 012027(2020).
[27] Nicholas A, Truesdale, Dinkel K J, et al. DayStar: Modeling test results of a balloonbne daytime star tracker [C]2013 IEEE Aerospace Conference, IEEE, 2013: 1–12.
[28] Engin Tola. Black-body SNR formulation of astronomical camera systems. IEEE Sensors Journal, 15, 4941-4949(2015).