[1] 李德仁, 张良培, 夏桂松. 遥感大数据自动分析与数据挖掘[J]. 测绘学报, 2014, 43(12):1211-1216. DOI:10.13485/j.cnki.11-208.2014.0187. LI Deren, ZHANG Liangpei, XIA Guisong. Automatic Analysis and Mining of Remote Sensing Big Data[J]. Acta Geodaetica et Cartographica Sinica, 2014, 43(12):1211-1216. DOI:10.13485/j.cnki.11-208.2014.0187. [2] 李德仁, 姚远, 邵振峰. 智慧城市中的大数据[J]. 武汉大学学报(信息科学版), 2014, 39(6):631-640. LI Deren, YAO Yuan, SHAO Zhengfeng. Big Data in Smart City[J]. Geomatics and Information Science of Wuhan University, 2014, 39(6):631-640. [3] COLLINS S H. The Stereo-Orthophoto Pair[J]. Photogrammetric Engineering, 1972, 38(12):1195-1202. [4] 刘凤德, 邱懿. 基于左右正射影像的三维量测方法的研究[J]. 测绘科学, 2004, 29(S):47-49. LIU Fengde, QIU Yi. Study on Three-Dimensional Measurement Method with Orthoimage[J]. Science of Surveying and Mapping, 2004, 29(S):47-49. [5] 李德仁, 王密. 一种基于航空影像的高精度可量测无缝正射影像立体模型生成方法及应用[J]. 铁道勘察, 2004, 30(1):1-6. LI Deren, WANG Mi. A Method for Generating Measurable Seamless Orthoimage Stereo Model with High Accuracy and Its Application Based on Aerial Images[J]. Railway Investigation and Surveying, 2004, 30(1):1-6. [6] 张祖勋, 郑顺义, 张剑清. 三维可视化工程设计的研究[J]. 武汉大学学报(信息科学版), 2004, 27(4):337-342. ZHANG Zuxun, ZHENG Shunyi, ZHANG Jianqing. Three-Dimensional Visualization Engineering Design[J]. Geomatics and Information Science of Wuhan University, 2004, 27(4):337-342. [7] PATTERSON R. Review Paper:Human Factors of Stereo Displays:An Update[J]. Journal of the Society for Information Display, 2009, 17(12):987-996. [8] SHIBATA T, KIM J, HOFFMAN D M, et al. The Zone of Comfort:Predicting Visual Discomfort with Stereo Displays[J]. Journal of Vision, 2011, 11(8):11. [9] SPERANZA F, TAM W J, RENAUD R, et al. Effect of Disparity and Motion on Visual Comfort of Stereoscopic Images[C]//Proceedings of SPIE 6055, Stereoscopic Displays and Virtual Reality Systems XⅢ. San Jose, CA:SPIE, 2006 [10] REICHELT S, HAUSSLER R, FVTTERER G, et al. Depth Cues in Human Visual Perception and Their Realization in 3D Displays[C]//Proceedings of SPIE7690, Three-Dimensional Imaging, Visualization, and Display 2010 and Display Technologies and Applications for Defense, Security, and Avionics IV. Orlando, Florida:SPIE, 2010:281-290. [11] FREEDMAN B, SHPUNT A, MACHLINE M, et al. Depth Mapping Using Projected Patterns:US, WO/2008/120217[P]. 2008-10-09. [12] OLESEN S M, LYDER S, KRAFT D, et al. Real-time Extraction of Surface Patches with Associated Uncertainties by Means of Kinect Cameras[J]. Journal of Real-Time Image Processing, 2015, 10(1):105-118. [13] HOLLIMAN N S. Smoothing Region Boundaries in Variable Depth Mapping for Real-Time Stereoscopic Images[C]//Proceedings of SPIE5664, Stereoscopic Displays and Virtual Reality Systems XⅡ. San Jose, CA:SPIE, 2005:281-992. [14] 李大锦, 白成杰. 实时立体视觉系统中的深度映射[J]. 中国图像图形学报, 2015, 20(3):366-373. LI Dajin, BAI Chengjie. Depth Mapping in Real-time Stereoscopic Systems[J]. Journal of Image and Graphics, 2015, 20(3):366-373. [15] XI Ming, WANG Lianghao, YANG Qingqing, et al. Depth-image-based Rendering with Spatial and Temporal Texture Synthesis for 3DTV[J]. EURASIP Journal on Image and Video Processing, 2013, 2013(1):9. [16] AFLAKI P, HANNUKSELA M M, GABBOUJ M. Subjective Quality Assessment of Asymmetric Stereoscopic 3D Video[J]. Signal, Image and Video Processing, 2015, 9(2):331-345. [17] HOLLIMAN N S. Mapping Perceived Depth to Regions of Interest in Stereoscopic Images[C]//Proceedings of SPIE 5291, Stereoscopic Displays and Virtual Reality Systems XI. San Jose, CA:SPIE, 2004:117-128. [18] SUN Geng, HOLLIMAN N. Evaluating Methods for Controlling Depth Perception in Stereoscopic Cinematography[C]//Proceedings of SPIE 7237, Stereoscopic Displays and Applications XX. San Jose, CA:SPIE, 2009:1-12. [19] 耿则勋, 张保明, 范大昭. 数字摄影测量学[M]. 北京:测绘出版社, 2010. GENG Zhexun, ZHANG Baoming, FAN Dazhao. Digital Photogrammetry[M]. Beijing:Surveying and Mapping Press, 2010. [20] 周杨, 腾飞, 徐青, 等. 基于正射影像的地形双模立体景观构建方法[J]. 测绘科学技术学报, 2013, 30(2):162-167. ZHOU Yang, TENG Fei, XU Qing, et al. A Method of Building Dual Mode Stereo Terrain Scene Based on Orthophoto[J]. Journal of Geomatics Science and Technology, 2013, 30(2):162-167. [21] HOFFMAN D M, GIRSHICK A R, AKELEY K, et al. Vergence-accommodation Conflicts Hinder Visual Performance and Cause Visual Fatigue[J]. Journal of Vision, 2008, 8(3):33. [22] JONES G R, LEE D, HOLLIMAN N S, et al. Controlling Perceived Depth in Stereoscopic Images[C]//Proceedings of SPIE 4297, Stereoscopic Displays and Virtual Reality Systems VⅢ. San Jose, CA:SPIE, 2001. |