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单DMD彩色视频显示系统的颜色控制 被引量:3

Color control of video displaying system based on single DMD
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摘要 对单DMD彩色视频显示系统中的颜色控制方法及其实现进行了深入研究。在简要分析三种DMD投影系统及空间灰度调制法、时间灰度调制法优缺点的基础上,提出了一种单DMD彩色视频显示系统方案,并着重分析了基于脉冲选通灰度调制的颜色控制方法:将帧周期均分为R、G、B时间段,并将各时间段等比例划分为各个位时间段,依据相应颜色分量灰度值控制DMD微镜的状态。由于DMD接收的是视频图像各像素的位平面数据,对图像灰度值到位平面数据的格式转换进行了详细分析。最后,依据DMD工作特点,给出了DMD操作控制时序。整个方案切实可行,可为系统实现提供理论依据。 The color controlling method and its realization of single DMD colorized video displayingsystem were studied in detail. Based on analyzing the advantages and shortcomings of three types ofDMD projection system,spatial gray-level modulation and temporal gray-level modulation, one singleDMD colorized video displaying system was proposed. The color controlling method based on pulseselection gray-level modulation was analyzed deeply. In this method, the frame-period was evenly dividedinto R,G,B section, and each of the R, G,B sections was divided proportionally to be some bit-timesections. In every bit-time section, the status of micromirror in DMD was controlled according to the bitvalue of corresponding pixel gray-level. Considering that the data sent to DMD was the bit-plane data ofvideo pixels, the format conversion from image gray-value to bit-plane data was analyzed in detail. Atlast, considering the feature of DMD, the operating scheduling was given. The whole scheme is doable. analysis could provide academic basis for the realization of the system.
出处 《红外与激光工程》 EI CSCD 北大核心 2013年第7期1848-1852,共5页 Infrared and Laser Engineering
基金 国家林业公益性行业科研专项资助(201204515) 中国科学院航空光学成像与测量重点实验室开放基金(Y2HC1SR12B)
关键词 颜色控制 数字微镜器件 彩色视频显示 color control digital micromirror device colorized video displaying
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  • 1Nayar S K, Mitsunaga T. High dynamic range imaging: spatially varying pixel exposures [C]//Proc of IEEE Conf on Computer Vision and Pattern Recognition, 20~), 1: 472- 479.
  • 2Nayar S K, Branzoi V. Adaptive dynamic range imaging: optical control of pixel exposures over space and time[C]// Proc of International Conference on Computer Vision (1CCV), 2003: 1168-1175.
  • 3Nayar S K, Branzoi V, Boult T E. Programmable imaging using a digital micromirror array [C]//Proc CVPR, 2004, 1: 436-443.
  • 4D Dudley, W Duncan, J Slaughter. Emerging digital micromirror device (DMD) applications [C]. SPIE, 2003, 4985: 14-25.
  • 5A A Adeyemi, N Barakat, T E Darcie. Applications of digital micro-mirror devices to digital optical microscope dynamic range enhancement [J]. Opt Express, 2009, 17(3): 1831-1843.
  • 6M Abolbashari, F Magalhses, F M M Arafijo, et al.. High dynamic range compressive imaging: a programmable imaging system [J]. Opt Eng, 2012, 51(7): 071407.
  • 7S K Nayar, T Mitsunaga. High dynamic range imaging: spatially varying pixel exposures [C]. IEEE Conference on Computer Vision and Pattern Recognition, 2000, 1: 472-479.
  • 8Applications lOLl. [2013-11-20]. http://www.pixim.com/applications.
  • 9S K Nayar, V Branzoi, T E Boult. Programmable imaging using a digital micromirror array [C]. Proceedings of the 2004 IEEE Computer Society Conference on Computer Vision and Pattern Recognition, 2004, 1: 1-436.
  • 10A Zlotnik, Y Kapellner, Z Afik, et al.. Geometric superresolution and field-of-view extension achieved using digital mirror devices [J]. J Micro/Nanolith MEMS MOEMS, 2013, 12(3): 033001.

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