[1] 王忆锋, 陆剑鸣. 向数字化发展的红外焦平面列阵[J]. 红外技术, 2013, 35(4): 195-201.

Wang Yifeng, Lu Jianming. Toward digitization in infrared focal plane array [J]. Infrared Technology, 2013, 35(4): 195-201. (in Chinese)
[2] 杨超伟, 李东升, 李立华, 等. 小像元碲镉汞红外焦平面阵列的研究进展[J]. 红外技术, 2019, 41(11): 1003-1011.

Yang Chaowei, Li Dongsheng, Li Lihua, et al. Review of small-pixel HgCdTe infrared focal plane detector [J]. Infrared Technology, 2019, 41(11): 1003-1011. (in Chinese)
[3] 丁瑞军, 杨建荣, 何力, 等. 碲镉汞红外焦平面器件技术进展[J]. 红外与激光工程, 2016, 45(5): 0103010.

Ding Ruijun, Yang Jianrong, He Li, et al. Development of technologies for HgCdTe IRFPA [J]. Infrared and Laser Engineering, 2016, 45(5): 0103010. (in Chinese)
[4] Bart Dierickx, Guy Meynants. Missing pixels correction algorithm for imager sensor[C]//Proc SPIE, 1998, 3410: 200-203.
[5] Sanders-Reed J N, Duncan M J, Boucher W B, et al. Multi-target tracking in clutter[C]//Proc SPIE, 2002, 4724: 30-36.
[6] 陈钱. 红外图像处理技术现状及发展趋势[J]. 红外技术, 2013, 35(6): 311-318.

Chen Qian. The Status and development trend of infrared image processing technology [J]. Infrared Technology, 2013, 35(6): 311-318. (in Chinese)
[7] Gross W, Hierl T, Schulz M. Correctability and long-term stability of infrared focal plane arrays [J]. Optical Engineering, 1999, 38(5): 862-869.
[8] Schulz M, Caldwell L. Nonuniformity correction and correctability of infrared focal plane arrays [J]. Infrared Physics & Technology, 1995, 36: 763-777.
[9] 刘高睿, 孙胜利, 林长青, 等. 红外线列探测器闪元噪声分析与抑制方法[J]. 红外与毫米波学报, 2018, 37(4): 421-426. doi:  10.11972/j.issn.1001-9014.2018.04.008

Liu Gaorui, Sun Shengli, Lin Changqing, et al. Analysis and suppression method of flickering pixel noise in images of infrared linear detector [J]. Journal of Infrared Millimeter Waves, 2018, 37(4): 421-426. (in Chinese) doi:  10.11972/j.issn.1001-9014.2018.04.008
[10] 孙渟, 廖清君, 叶振华. 从生产过程实现碲镉汞红外探测器的性能提高[J]. 红外, 2019, 40(5): 1-9. doi:  10.3969/j.issn.1672-8785.2019.05.001

Sun Ting, Liao Qingjun, Ye Zhenhua. Performance improvement of mercury cadmium infrared detector from production process [J]. Infrared, 2019, 40(5): 1-9. (in Chinese) doi:  10.3969/j.issn.1672-8785.2019.05.001
[11] 陈星. 碲镉汞红外焦平面可靠性相关技术研究[D]. 上海: 中国科学院上海技术物理研究所, 2014.

Chen Xing. Research on the related technology of HgCdTe infrared focal plane detector reliability[D]. Shanghai: Shanghai Institute of Techcial Physics, Chinese Academy of Sciences, 2014. (in Chinese)
[12] Cathignol A, Vauquelin G, Brunner A, et al. RMS noise modeling and detection for high-reliability HgCdTe infrared focal plane arrays development[C]//SPIE, 2015, 9451: 945126.
[13] 曾戈虹. p-on-n HgCdTe 红外探测器机理分析与性能计算[J]. 红外技术, 2013, 35(5): 249-258.

Zeng Gehong. Fundamentals of p-on-n HgCdTe infrared detectors and their detectivity calculations [J]. Infrared Technology, 2013, 35(5): 249-258. (in Chinese)
[14] Greiner M E, Smith R L, Timlin H A. Uniformity and stability in 2-dimensional infrared focal plane arrays[C]//Proceedings of SPIE, 1994, 2225: 176-184.
[15] 石岩. 凝视红外成像信息处理系统图像预处理方法与系统软件研究[D]. 武汉: 华中科技大学, 2005: 26-27.

Shi Yan. Study on the image pre-processing method and system software for staring IR imaging information processing system[D]. Wuhan: Huazhong University of Science and Technology, 2005: 26-27.(in Chinese)
[16] Bart Dierickx, Guy Meynants. Missing pixels correction algorithm for imager sensor[C]//Proc SPIE, 1998, 3410: 200-203
[17] 叶振华, 胡晓宁, 张海燕, 等. 不同结构的碲镉汞长波光伏探测器的暗电流研究[J]. 红外与毫米波学报, 2004, 23(2): 86-90. doi:  10.3321/j.issn:1001-9014.2004.02.002
[18] 陈宝国, 樊养余, 王巍. 红外焦平面阵列盲元判据的相关性研究[J]. 激光与红外, 2013, 43(2): 186-189. doi:  10.3969/j.issn.1001-5078.2013.02.015

Chen Baoguo, Fan Yangyu, Wang Wei. Research on relations among defective element criterions of IRFPA [J]. Laser & Infrared, 2013, 43(2): 186-189. (in Chinese) doi:  10.3969/j.issn.1001-5078.2013.02.015
[19] 崔坤, 陈凡胜, 苏晓锋, 等. 红外焦平面阵列响应率不稳定像元快速筛选方法[J]. 红外技术, 2017, 39(2): 130-135.

Cui Kun, Chen Fansheng, Su Xiaofeng, et al. A fast screening method of pixels with unstable response rate in IRFPA [J]. Infrared Technology, 2017, 39(2): 130-135. (in Chinese)
[20] Hirsch J, Curcio C A . The spatial resolution capacity of human foveal Retina [J]. Vision Research, 1989, 29(9): 1095-1101.
[21] 郝立超, 黄爱波, 赖灿雄, 等. 盲元作为红外焦平面可靠性分析手段的探讨[J]. 红外与激光工程, 2016, 45(5): 0504004.

Hao Lichao, Huang Aibo, Lai Canxiong, et al. Discussion of reliability analysis on IRFPAs by bad pixel [J]. Infrared and Laser Engineering, 2016, 45(5): 0504004. (in Chinese)
[22] 候治锦, 傅莉, 司俊杰, 等. 面阵探测器相连缺陷元识别定位[J]. 红外与毫米波学报, 2017, 36(2): 208-213. doi:  10.11972/j.issn.1001-9014.2017.02.014

Hou Zhijin, Fu Li, Si Junjie, et al. Identification and orientation of connected defective elements in FPA [J]. Journal of Infrared Millimeter Waves, 2017, 36(2): 208-213. (in Chinese) doi:  10.11972/j.issn.1001-9014.2017.02.014
[23] 候治锦, 傅莉, 鲁正雄, 等. InSb面阵探测器铟栅阵列缺陷成因与特性研究[J]. 红外与毫米波学报, 2018, 37(3): 325-331. doi:  10.11972/j.issn.1001-9014.2018.03.012

Hou Zhijin, Fu Li, Lu Zhengxiong, et al. Causes and characteristics of indium bump defects in InSb focal plane array [J]. Journal of Infrared Millimeter Waves, 2018, 37(3): 325-331. (in Chinese) doi:  10.11972/j.issn.1001-9014.2018.03.012
[24] 孔金丞, 覃钢, 秦强, 等. 碲镉汞红外焦平面响应图“交叉线”特征起源探讨[J]. 红外技术, 2019, 41(2): 101-106.

Kong Jincheng, Qin Gang, Qin Qiang, et al. Crosshatch pattern on HgCdTe FPA response imaging [J]. Infrared Technology, 2019, 41(2): 101-106. (in Chinese)
[25] 刘宁, 陈钱, 顾国华, 等. 640×512 红外焦平面阵列前端噪声分析及抑制技术[J]. 红外技术, 2010, 32(10): 572-575. doi:  10.3969/j.issn.1001-8891.2010.10.004

Liu Ning, Chen Qian, Gu Guohua, et al. The noise analysis and inhibition technology of the driving circuits of the 640×512 IR focal plane detector [J]. Infrared Technology, 2010, 32(10): 572-575. (in Chinese) doi:  10.3969/j.issn.1001-8891.2010.10.004
[26] Takagi K, Mizunami T, Suzuki J, et al. 1/f noise in metal contacts and granular resistors [J]. IEEE Trans, 1986, 9(2): 141-144.