光学与光电技术, 2011, 9 (6): 9, 网络出版: 2012-01-05  

多孔径仿生复眼成像系统技术进展综述

Progress of Multiaperture Bionic Compound Eye Imaging Systems
作者单位
北京理工大学光电学院“光电成像技术与系统”教育部重点实验室, 北京 100081
摘要
昆虫复眼是一种理想的小型化、多孔径、大视场的视觉系统,具有智能特征,虽然由于每个复眼的孔径尺寸和数值孔径都很小,使昆虫复眼的视力较差,但是其对运动目标却有很高的探测灵敏度,且对光的强度、波长和颜色等都有较强的分辨力。长期以来,人们一直致力于昆虫复眼的特性以及仿生昆虫复眼的研究。对目前常见的复眼类型和现有的各种类型的仿生复眼系统研究进展进行了深入分析,对比了各种类型仿生复眼系统的结构和技术特点,并对仿生复眼系统的发展趋势进行了展望。
Abstract
Insects compound eye is an ideal intelligence imaging system with the advantages of miniaturization, multiaperture and wide field of view. Although each ommatidiums aperture size and numerical aperture are very small which cause the poor eyesight of insects, the compound eye has high sensitivity to moving targets and high difference to light intensity, wavelenth and color. The researchers for a long time were absorbed in the research of the characteristics and composition of insects compound eye. The common types of compound eye and present bionic compound eye were thoroughly analysised. The technical characteristics and composition of different bionic compound eye were compared with each other. Development tendency of this field was discussed.
参考文献

[1] [EB/OL]. http://www.chinamil.com.cn/site1/xwpdxw/2007-10/15/content_981977.htm.

[2] 刘浩. 基于微透镜阵列的仿生复眼结构研究[D]. 武汉: 华中科技大学, 2008.

[3] 张红鑫, 卢振武, 李凤有. 人工仿生复眼的研究进展[J]. 长春理工大学学报, 2006, 29(2): 4-7.

[4] Tanida J, Kumagai T, Yamada K, et al. Thin observation module by bound optics(TOM-BO): concept and experimental verification[J]. Appl Opt, 2001, 40(10): 1806-1813.

[5] Tanida J, Kumagai T, Yamada K, et al. Observation module by bound optics(TOMBO): an optoelec-tronic image capturing system[C]. SPIE, 2000, 4089: 1030-1036.

[6] Shigehiro Miyatake, Rui Shogenji, Masaru Miyamotoc, et al. Thin observation module by bound optics(TOMBO) with color filters[C]. SPIE, 2004, 5301: 7-12.

[7] Duparre J, Dannberg P, Schreiber P, et al. Artificial apposition compound eye fabricated by micro-optics technology[J]. Appl Opt, 2004, 43(22): 4303-4310.

[8] Duparre J, Dannberg P, Schreiber P, et al. Micro-optically fabricated artificial appos-ition compound eye[C]. SPIE, 2004, 5301: 25-33.

[9] Wippermann F, Duparre J, Sehreiber P, et al. Design and fabrication of a chirped array of refractive ellipsoidal micro-lenses for an apposition eye camera objective[C]. SPIE, 2005, 5962: 1-11.

[10] Duparre J, Schreiber P, Dannberg P, et al. Artificial compound eyes-different concepts and their application to ultra flat image acquisition sensors[C]. SPIE, 2004, 5346: 89-100.

[11] Duparre J, Schreiber P, Volkel R. Theoretical analysis of an artificial superposition compound eye for application in ultra flat digital image acquisition devices[J]. SPIE, 2004, 5249: 408-418.

[12] Duparre J, Radtke D, Bruckner A, et al. Latest developments in microoptical artificial compound eyes: a promising approach for next generation ultra-compact machine vision[C]. SPIE, 2007, 6503: 1-12.

[13] Duparre J, Radtke D, Tunnermann A. Spherical artificial compound eye captures real images[C]. SPIE, 2007, 6466: 1-9.

[14] Duparre J, Dannberg P, Schreiber P, et al. Thin compound-eye camera[J]. Appl Optics, 2005, 44(15): 2949-2956.

[15] Yukun Zhang, Jinglei Dua, Lifang Shi, et al. Artificial compound-eye imaging system with a large field of view based on a convex solid substrate[J]. SPIE, 2010, 7848: 1-5.

[16] 张红鑫, 卢振武, 李凤有, 等. 基于ZEMAX软件的重叠复眼的模拟与分析[J]. 光学技术, 2006, 32(增刊): 125-129.

[17] 蔡梦颖, 徐贵力. 仿蝇复眼视觉系统中大视场图像的拼接[J]. 传感器与微系统, 2007, 26(12): 82-84.

[18] 王克逸, 张浩, 曹兆楼, 等. 复眼位标器的标定与探测[J]. 光学精密工程, 2010, 18(8): 1807-1813.

[19] L C Laycock, V A Handerek. Multiple-aperture imaging device for airborne platforms[C]. Electro-Optical and Infrared Systems: Technology and Applications IV, SPIE, 2007, 6737: 1-11.

[20] L C Laycock, V A Handerek. Miniature ima-ging devices for airborne platforms[C]. Electro-Optical and Infrared Systems: Technology and Applications V, SPIE, 2008, 7113: 1-5.

金伟其, 林青, 裘溯, 米凤文. 多孔径仿生复眼成像系统技术进展综述[J]. 光学与光电技术, 2011, 9(6): 9. JIN Wei-qi, LIN Qing, QIU Su, MI Feng-wen. Progress of Multiaperture Bionic Compound Eye Imaging Systems[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2011, 9(6): 9.

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