浏览全部资源
扫码关注微信
南开大学 现代光学研究所 教育部光电信息技术与科学重点实验室 天津,300071
收稿日期:2010-03-09,
修回日期:2010-04-05,
网络出版日期:2010-10-28,
纸质出版日期:2010-10-20
移动端阅览
赵星, 吴宏超, 宋丽培, 方志良. 微型投影机自由曲面LED聚光器的设计[J]. 光学精密工程, 2010,18(10): 2123-2129
ZHAO Xing, WU Hong-chao, SONG Li-pei, FANG Zhi-liang. Design of freeform LED concentrator for micro-projector[J]. Editorial Office of Optics and Precision Engineering , 2010,18(10): 2123-2129
赵星, 吴宏超, 宋丽培, 方志良. 微型投影机自由曲面LED聚光器的设计[J]. 光学精密工程, 2010,18(10): 2123-2129 DOI: 10.3788/OPE.20101810.2123.
ZHAO Xing, WU Hong-chao, SONG Li-pei, FANG Zhi-liang. Design of freeform LED concentrator for micro-projector[J]. Editorial Office of Optics and Precision Engineering , 2010,18(10): 2123-2129 DOI: 10.3788/OPE.20101810.2123.
为提高LED微型投影机中光学引擎的效率和结构紧凑性
研究了自由曲面LED聚光器结构和工作原理
设计了含有折射和反射自由曲面的LED聚光器。采用非成像理论和同时多表面设计方法
计算并获得了聚光器折射和反射两个自由曲面在子午截面内的各点坐标
利用聚光器的旋转对称性得到了其在三维空间内的面形数据。设计结果的光学建模仿真分析表明:所得聚光器能够有效地收集大功率LED光源的能量
并将光束发散角控制在12内
其光能收集率达到71%。与采用反射式聚光器的设计方案相比
光能收集率提高了20%
而体积则下降了70%
有效地提高了光学引擎的效率和紧凑性。本项设计对LED微型投影仪的小型化具有指导和借鉴作用。
The structure and working principle of a freeform LED concentrator were researched and a compact LED concentrator with refractive and reflective freeform surfaces for the micro-projector was designed to improve the concentration efficiency and to compress the volume. Based on non-imaging optics and the method of simultaneous multi-surfaces
the curves of freeform surfaces in the meridian planes were calculated
then the 3D structure of the concentrator was obtained by rotating the curves along
Z
axis. The simulation result confirms that the concentrator can collect the energy from high power LED sources effectively with a collection efficiency of 71% and can control the divergence angle within 12. Compared with conventional reflective ones
this new concentrator increases the collection efficiency by 20% and compresses the volume by 70%. The design can provide a reference for the microminiaturization of LED micro-projectors.
李学彬,高亦桥,纪玉峰,等. LED光源光学粒子计数器的研制[J]. 光学 精密工程,2008,16(3):406-409. LI X B, GAO Y Q,JI Y F,et al.. Development of optical particle counter of LED lamp-house [J].Opt. Precision Eng.,2008,16(3):406-409. (in Chinese)[2] LU W, GU P F,SHEN M. A novel LED illumination system used in hand-held projector[J]. SPIE, 2005,5638:103-107.[3] 朱孝立,陈军宁. 光电编码器LED光源准直特性研究[J]. 光学 精密工程,2009,17(4):750-756. ZHU X L, CHEN J N. Research on features of collimated LED beam in optical encoder[J].Opt. Precision Eng.,2009,17(4):750-756.[4] 杨毅,钱可元,罗毅. 一种新型的基于非成像光学的LED 均匀照明系统[J]. 光学技术,2007,33(1):110-115. YANG Y, QIAN K Y, LUO Y. A novel LED uniform illuminance system based on nonimaging optics[J]. Optical Technique, 2007,33(1):110-115. (in Chinese)[5] 屠大维,吴仍茂,杨恒亮,等. LED封装光学结构对光强分布的影响研究[J]. 光学 精密工程,2008,16(5):832-838. TU D W, WU R M, YANG H L,et al.. Effect of optical package structure of LED to intensity distribution[J]. Opt. Precision Eng., 2008,16(5):832-838. (in Chinese)[6] FOURNIER F, ROLLAND J. Design methodology for high brightness projectors[J]. Journal of Display Technology, 2008, 4(1):86-91.[7] YU X J, HU Y L,TAN L,et al.. LED-Based projection systems[J]. Journal of Display Technology, 2007,3(3):295-303.[8] 李晓艳,钟伯亮,王乐,等. LCOS微型投影系统的LED照明设计[J]. 光学技术,2007,33(5):751-753. LI X Y, ZHONG B L, WANG L, et al.. Design of LED illumination system in LCOS micro-projector[J]. Optical Technique, 2007,33(5):751-753. (in Chinese)[9] PAN J W, TU SH H,WANG CH M,et al.. High efficiency pocket-size projector with a compact projection lens and a light emitting diode-based light source system[J]. Appl. Opt., 2008,47(19):3406-3414.[10] 甄艳坤,李岩,白燕. TIR透镜优化设计在LED微投影显示系统中的应用[J]. 应用光学,2009,30(3):366-371. ZHEN Y K, LI Y, BAI Y. Application of TIR lens optimization design in LED micro-projector[J]. Journal of Applied Optics, 2009,30(3):366-371. (in Chinese)[11] ZHAO X, FANG ZH L,CUI J CH,et al.. Illumination system using LED sources for pocket-size projectors[J]. Appl. Opt., 2007,46(4):522-526.[12] WINSTON R, MINANO J C, BENITEZ P, et al.. Non-imaging Optics[M]. Burlington, MA: Elsevier Academic Press, 2005.[13] DROSS O, MOHEDANO R N,BENTEZ, et al.. Review of SMS design methods and real world applications[J]. SPIE, 2004,5529:35-47.[14] RIES H, RABL A. Edge-ray principle of non-imaging optics[J]. J. Opt. Soc. Am. A, 1994,11(10):2627-2632.[15] BENTEZ P, MINANO J C. Ultrahigh-numerical-aperture imaging concentrator[J]. J. Opt. Soc. Am. A, 1997,14(8):1988-1997.[16] ALAMO N,CRIADO C. Amethod to construct refracting profiles[J]. Inverse Problems, 2004,20:229-238.
0
浏览量
789
下载量
6
CSCD
关联资源
相关文章
相关作者
相关机构