期刊文献+

基于ZEMAX的仿生DRA复眼阵列的仿真与分析 被引量:2

Simulation and Analysis of the Bionic DRA Compound Eyes Based on the ZEMAX Software
下载PDF
导出
摘要 昆虫DRA区域复眼阵列可以接收天空偏振光,并将包含其中的偏振信息提取出来,使昆虫复眼具备导航的功能;根据生物解剖学得出的DRA复眼阵列结构,提出一种采用MEMS工艺制作的简化阵列结构,其体积小、质量轻、视角大,通过拼合可以实现180°天空区域的偏振信息的完整获取;并在ZEMAX中建立了DRA复眼阵列模型,通过仿真分析得出此DRA复眼阵列模型采用的材料及结构合理,可以用来检测天空光偏振分布模式(E-矢量分布模式)。 Compound array in the DRA area of insects can receive the polarized light in the sky and abstract its polarization information, which enable the insects to navigate. According to the structure of DRA compound array elicited from biological anatomy, we put forward a kind of simplified array architecture made by MEMS technology, which has small volume, light weight, large visual angle and can perfectly obtain the polarization information of the sky all through 180° by combination. Then, we build the model of DRA compound array in ZEMAX, and educe that the material and structure of the model of DRA compound array are reasonable and can be used to detect the polarization information of the sky light effectively.
出处 《光电工程》 CAS CSCD 北大核心 2014年第5期83-88,共6页 Opto-Electronic Engineering
基金 国家973子课题(2012CB723404)
关键词 仿生DRA复眼阵列 E-矢量 晶锥孔 MEMS 混合序列 bio-inspired DRA compound eyes E-vector crystal cones cavity MEMS mixed sequential
  • 相关文献

参考文献13

  • 1Salmah B Karman, S Zaleha M Diah, Ille C Gebeshuber. Bio-Inspired Polarized Skylight-Based Navigation Sensor: A Review [J]. Sensors(S1424-8220), 2012, 12(11): 14232-14261.
  • 2Wehner R. Desert ant navigation: How miniature brains solve complex tasks [J]. Comp. Physiol. A(S0340-7594), 2003, 189(8): 579-588.
  • 3Towne W F, Baer C M, Fabiny S J, et al. Does swarming cause honey bees to update their solar ephemerides [J]. Journal of Experimental Biology(S0022-0949), 2005, 208(21): 4049-4061.
  • 4Labhart T, Baumann F, Bernard G D. Specialized ommatidia of the polarization-sensitive dorsal rim area in the eye of monarch butterflies have non-functional reflecting tapeta [J]. Cell Tissue Res(S0302-766X), 2009, 338(3): 391-400.
  • 5Homberg U, Paech A. Ultrastructure and orientation of ommatidia in the dorsal rim area of the locust compound eye [J]. Arthropod Structure and Development (S1467-8039), 2002, 30(4): 271-280.
  • 6冷雪,那杰.昆虫复眼的结构和功能[J].沈阳师范大学学报(自然科学版),2009,27(2):241-244. 被引量:29
  • 7徐琰,颜树华,周春雷,张军.昆虫复眼的仿生研究进展[J].光学技术,2006,32(z1):10-12. 被引量:26
  • 8邸思,徐洪奎,杜如虚.人造复眼成像系统研究的新进展[J].光学与光电技术,2008,6(4):93-96. 被引量:15
  • 9巩宪伟,鱼卫星,张红鑫,卢振武,孙强,沈宏海.仿生复眼成像系统设计与制作的研究进展[J].中国光学,2013,6(1):34-45. 被引量:22
  • 10向思桦,陈四海,潘峰,黄磊,赖建军,柯才军,易新建.柔性仿生复眼成像系统探测机理模拟研究[J].半导体光电,2005,26(B03):26-29. 被引量:2

二级参考文献95

共引文献98

同被引文献23

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部