[1] 白廷柱, 金伟其. 光电成像原理与技术[M]. 北京: 北京理工大学出版社, 2006.
[2] Keith Lewis. Systems for persistent surveillance[C]//SPIE, 2011, 8165: 816514.
[3] Slinger C W, Bennett C R, Dyer D, et al. An adaptive coded aperture imager: building, testing and trialing a super-resolving terrestrial demonstrator[C]//Proc of SPIE, 2011, 8165: 816511.
[4] Mark Hewish. Passive target detection for air combat gathers pace-performance enhancements in infrared search and track systems [J]. International Defense Review, 1998(2): 32-37.
[5] Mark Hewish. Moderating MAN PAPS mean streak-aircraft strive for increased awareness of IR missile attack [J]. International Defense Review, 1998(3): 50-57.
[6] 张渊. 分布孔径红外系统及其新进展[J]. 科技咨询导报, 2007, 14(18): 8-12.
[7] Laycock Leslie, Handerek Vincent. Multiple-aperture imaging device for airborne platforms[C]//Electro-Optical and Infrared Systems: Technology and Applications IV, SPIE, 2007, 6737: 1-11.
[8] Laycock Leslie, Handerek Vincent. Miniature imaging devices for airborne platforms[C]//Electro-Optical and Infrared Systems: Technology and Applications V, SPIE, 2008, 7113: 1-9.
[9] Duparre J, Dannberg P, Schreiber P, et al. Micro-optically fabricated artificial apposition compound eye[C]//SPIE, 2004, 5301: 25-33.
[10] Afshari Hossein, Popovic Vladan, Tasci Tugce, et al. A spherical multi-camera system with real-time omnidirectional video acquisition capability [J]. IEEE Transactions on Consumer Electronics, 2012, 58(4): 1110-1118. doi:  10.1109/TCE.2012.6414975
[11] Song Young Min, Xie Yizhu, Malyarchuk Viktor, et al. Digital cameras with designs inspired by the arthropod eye [J]. Nature, 2013, 497(7447): 95-99. doi:  10.1038/nature12083
[12] Shankar M, Willett R, Pitsianis N, et al. Ultra-thin multiple-channel LWIR imaging systems[C]//Proc of SPIE, 2006, 6294: 629411.
[13] Shankar M, Willett R, Pitsianis N, et al. Thin infrared imaging systems through multichannel sampling [J]. Applied Optics, 2008, 47(10): B1-B10.
[14] Carles G, Muyo G, Bustin N, et al. Multi-aperture imaging in the visible and thermal infrared[C]//Imaging and Applied Optics, 2013: CM3C. 3.
[15] Harvey Andrew R, Carles Guillem, Cowan Laura, et al. The simplicity, complexity, and benefits of multi-aperture imaging in the thermal infrared[C]//Proc of SPIE, Emerging Imaging and Sensing Technologies for Security and Defence II, 2017, 10438: 1043806.
[16] Qiu Su, Ni Yu, Jin Weiqi, et al. FOV modeling of multi-aperture superposition compound eye based on micro-surface fiber faceplate [J]. Optics and Precision Engineering, 2015, 23(11): 2018-3025. (in Chinese)
[17] 金伟其, 王霞, 罗琳, 等. 一种多孔径变空间分辨率仿生热成像方法与装置: 中国, CN108965678A[P]. 2018-12-07.
[18] 金伟其, 罗琳, 裘溯, 等. 一种多孔径视场部分重叠的偏振热成像方法与装置: 中国, CN109164463A[P]. 2019-01-08.
[19] 金伟其, 李力, 罗琳, 等. 多孔径视场部分重叠的双波段热成像方法与装置: 中国, CN109163809A[P]. 2019-01-08.