本章参考文献

[1] Shannon C. A Mathematical Theory of Communication. The Bell System Technical[J]. 1948,27: 379-423.

[2] Shannon C. The lattice theory of information[J]. Transactions of the Ire Professional Group on Information Theory,2003,1(1): 105-107.

[3]马於光. OLED:引领显示技术革命[J]. 科学通报,2017,35: 4089.

[4] Moore G E. Cramming more components onto integrated circuits[J]. Proceedings of the IEEE,2002,86(1): 82-85.

[5] 马群刚,杨建飞,李跃进,等. 摩尔定律的思想潜力和极限[J]. 中国软科学,2002,9: 70-76.

[6] M. Mitchell Waldrop. The chips are down for Moore's law[J]. Nature,2016,530: 144-147.

[7] Helmut Tributsch. On the Fundamental Meaning of the Principle of Least Action and Consequences for a Dynamic Quantum Physics[J]. Journal of Modern Physics,2016,7: 365-374.

[8] Michał Zwierzyński. The improved isoperimetric inequality and the Wigner caustic of planar ovals[J]. Journal of Mathematical Analysis and Applications,2016,442: 726-739.

[9] 马群刚. TFT-LCD原理与设计[M]. 北京:电子工业出版社,2011.

[10] Jeevanjee,Nadir. An Introduction to Tensors and Group Theory for Physicists[M]. Birkhäuser Basel,Springer International Publishing Switzerland,2015.

[11] Tamara G. Kolda,Brett W. Bader. Tensor Decompositions and Applications[J]. Society for Industrial and Applied Mathematics,2009,51(3): 455-500.

[12] T. G. Kolda,B. W. Bader. Tensor Decompositions and Applications[J]. SIAM Review,2009,51(3): 455-500.

[13] Qun Li,Dan Schonfeld. Multilinear Discriminant Analysis for Higher-Order Tensor Data Classification[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence,2014,36(12): 2524-2537.

[14] Helmut Tributsch. On the Fundamental Meaning of the Principle of Least Action and Consequences for a “Dynamic” Quantum Physics[J]. Journal of Modern Physics,2016,7: 365-374.

[15] R.W. Hamming. Coding and information theory[M]. Upper Saddle River: Prentice-Hall,1980.

[16] Yu D S. Planar directed geometry[M]. Beijing: Science Press,2014.

[17] Schubert,E. Fred. Light-Emitting Diodes[M]. Cambridge,UK: Cambridge University Press,2006.

[18] 马群刚. 非主动发光平板显示技术[M]. 北京:电子工业出版社,2013.

[19] Charles Wheatstone. Contributions to the physiology of vision.—Part the First. On the some remarkable,and hitherto unobserved,phenomena of binocular vision[J]. Philosophical Transactions of the Royal Society of London,2009,128(6): 371-394.

[20] Rollmann W. Zwei neue stereoskopische Methoden[J]. Annalen Der Physik,2010,166(9): 186-187.

[21] John Anderton. Method by which pictures projected upon screens by magic lanterns are seen in relief[P]. Pat. no. 542,321,1895.

[22] F. E. Ives. Parallax Stereogram and Process for Making Same[P]. Pat. no. 725,567,1903.

[23] M. G. Lippmann. Epreuves Reversibles Donnant la Sensation du Relief[J]. de Phys,1908,7: 821-825.

[24] A. P. Sokolov. Autostereoscopy and Integral Photography by Professor Lippmann's Method[M]. Moscow State Univ. Press,1911.

[25] C. W. Kanolt. Photographic Method and Apparatus[P]. Pat. no.1,260,682,1918.

[26] Gabor D. A new microscopic principle[J]. Nature,1948,161(4098): 777.

[27] T L Turner,R F Hellbaum. LC shutter glasses provide 3-D display for simulated flight[M]. Information Display archive,1986,2(9): 22-24.

[28] Downing E,Hesselink L,Ralston J,et al. A three-color,solid-state,three- dimensional display[J]. Science,1996,273: 1185-1189.

[29] Dekker T,Willemsen O H,Hiddink M G H,et al. 2D/3D switchable displays[C]. Society of Photo-optical Instrumentation Engineers Conference Series. SPIE,2006: 61350K-61350K-11.

[30] John Schultz,Bret Haldin. Market Evolution and Demand for Optical Films[J]. Information Display,2011,1(11): 14-17.

[31] Gareth P. Bell,Robert Craig,Robert Paxton,et al. Beyond Flat Panels—Multi Layer Displays with Real Depth[J]. Journal of SID,2008,39(1): 352-355.

[32] Neil A. Dodgson. Optical devices: 3D without the glasses[J]. Nature,2013,495: 316-317.

[33] Jason Geng. Three-dimensional display technologies[J]. Adv Opt Photonics,2013,5(4): 456-535.

[34] 小池崇文. 4次元光線再生方式ディスプレイに関する理論的検討とその応用[D]. 東京:東京大学,2009.

[35] Häussler R,Gritsai Y,Zschau E,et al. Large real-time holographic 3D displays: enabling components and results[J]. Appl Opt,2017,56(13): F45.

[36] Stadler K L,Ruth J D,Pancotto T E,et al. Computed Tomography and Magnetic Resonance Imaging Are Equivalent in Mensuration and Similarly Inaccurate in Grade and Type Predictability of Canine Intracranial Gliomas.[J]. Frontiers in Veterinary Science,2017,4: 157.

[37] Cheng C C,Li C T,Chen L G. A 2D-to-3D conversion system using edge information[C]. International Conference on Consumer Electronics. IEEE,2010: 377-378.

[38] W.-N. Lie,C.-Y. Chen,W.-C. Chen. 2D to 3D video conversion with key-frame depth propagation and trilateral filtering[J]. Electronics Letters,2011,47(5): 319-321.

[39] Chao-Chung Cheng,Chung-Te Li,Liang-Gee Chen. A novel 2D-to-3D conversion system using edge information[J]. IEEE Transactions on Consumer Electronics,2010,56(3): 1739-1745.

[40] Liang Zhang,Carlos Vázquez ,Sebastian Knorr. 3D-TV Content Creation: Automatic 2D-to-3D Video Conversion[J]. IEEE Transactions on Broadcasting,2011,57(2): 372-383.

[41] Ezhov,Vasily. Optical layout of autostereoscopic display that simultaneously reproduces two views each with full-screen resolution[J]. Applied Optics,2014,53: 8449-8455.

[42] Kim Sung-Kyu,Yoon Ki-Hyuk,Yoon SeonKyu,et al. Parallax barrier engineering for image quality improvement in an autostereoscopic 3D display[J]. Optics Express,2015,23: 13230-13244.

[43] AtanasBoev,Robert Bregovic,AtanasGotchev. Visual-quality evaluation methodology for multiview displays[J]. Displays,2012,33: 103-112.

[44] Min-Chul Park,Sungchul Mun. Overview of Measurement Methods for Factors Affecting the Human Visual System in 3D Displays[J]. Journal of Display Technology,2015,11(11): 877-888.

[45] Oleeviya Joseph,Lavanya Kalikivayi,Sajeev Cherian Jacob,et al. Orthoptic parameters and asthenopic symptoms analysis after 3D viewing at varying distances[J]. International Eye Science,2018,5: 769-774.

[46] Jincheol Park,Heeseok Oh,Sanghoon Lee,et al. 3D Visual Discomfort Predictor: Analysis of Disparity and Neural Activity Statistics[J]. IEEE Transactions on Image Processing,2015,24(3): 1101-1114.

[47] 黒田章裕,前田秀一.過去,現在,次世代の3D表示技術[J].日本画像学会誌,2017,56(4): 336-340.

[48] Manuel Martínez-Corral,Bahram Javidi. Fundamentals of 3D imaging and displays: a tutorial on integral imaging,light-field,and plenoptic systems[J]. Advances in Optics and Photonics,2018,10(3): 512-566.

[49] Wolfgang Osten,Ahmad Faridian,Peng Gao,et al. Recent advances in digital holography[J]. Applied Optics,2014,53(27): G44-G63.

[50] Bahram Javidi,Fumio Okano,Jung-Young Son. Three-Dimensional Imaging,Visualization,and Display[M]. New York: SpringerPress,2014.

[51] Lingli Zhan,Minggao Li,Bin Xu,et al. Directional Backlight 3D Display System With Wide-Dynamic-Range View Zone,High Brightness and Switchable 2D/3D[J]. Journal of Display Technology,2016,12(12): : 1710-1714.

[52] 森本詔三,杉浦和浩,高沖英二. 3Dディスプレイの応用製品[J]. 光アライアンス,2015,26(4): 5-9.

[53] Makoto Mizukami,Seung-Il Cho,Kaori Watanabe,et al. Flexible Organic Light-Emitting Diode Displays Driven by Inkjet-Printed High-Mobility Organic Thin-Film Transistors[J]. IEEE Electron Device Letters,2018,39: 39-42.

[54] Chih-Lung Lin,Po-Syun Chen,Ming-Yang Deng,et al. UHD AMOLED Driving Scheme of Compensation Pixel and Gate Driver Circuits Achieving High-Speed Operation[J]. IEEE Journal of the Electron Devices Society,2018,6: 26-33.

[55] Pan Jiangyong,Huang Qianqian,Zhang Yuning,et al. Application of Solvent Modified PEDOT:PSS in All-Solution-Processed Inverted Quantum Dot Light-Emitting Diodes[J]. Journal of Display Technology,2016,12(10): 1157-1161.

[56] Ke Zhang,Deng Peng,Wing Cheung Chong,et al. Investigation of Photon-Generated Leakage Current for High-Performance Active Matrix Micro-LED Displays[J]. IEEE Transactions on Electron Devices,2016,63(12): 4832-4838.

[57] Kim Sung-Kyu,Yoon Ki-Hyuk,Yoon SeonKyu,et al. Parallax barrier engineering for image quality improvement in an autostereoscopic 3D display[J]. Optics Express,2015,23: 13230-13244.

[58] 佐藤甲癸. 3Dディスプレイ[J]. 画像電子学会誌,2015,44(2): 291-293.

[59] Tang C. W.,Vanslyke S. A.. Organic electroluminescent diodes[J]. Applied Physics Letters,1987,51(12): 913.

[60] Ching W. Tang. Multilayer organic photovoltaic elements[P]. Eastman Kodak Company,US4164431,1979.

[61] Peter H. Putman. Displays: From Fantasy to Reality in a Century[J]. SMPTE Motion Imaging Journal,2016,125: 85-89.

[62] T. Kamiya,K. Nomura,H. Hosono. Present status of In-Ga-Zn-O thin-film transistors[J]. Sci. Technol. Adv. Mater,2010,11: 1-23.

[63] Haruki Mizushina,Junya Nakamura,Yasuhiro Takaki,et al. Super multi ‐view 3D displays reduce conflict between accommodative and vergence responses[J]. Journal of SID,2016,24(12): 747-756.

[64] 伊達宗和. 3D技術[J].映像情報メディア学会技術報告,2014 ,38(28): 25-28.

[65] Hepeng Jia. Who will win the future of display technologies[J]. National Science Review,2018,5(3): 427-431.

[66] Joo-Tae Moon. State of the art technologies and future prospective in display industry[J]. 2012 International Electron Devices Meeting,2012: 1.2.1-1.2.4.

[67] K. Suzuki. Past and future technologies of information displays[J]. IEEE International Electron Devices Meeting,2005. IEDM Technical Digest. 2005: 16-21.

[68] S. Uchikoga. Future Trend of Flat Panel Displays and Comparison of its Driving Methods[J]. 2006 IEEE International Symposium on Power Semiconductor Devices and IC's,2006: 1-5.

[69] Yoochae Chung,Chang-Hyeon Sung,Jin-Ho Kim,et al. Power-efficient drive circuit for plasma display panel[J]. Displays,2014,35(2): 66-73.

[70] Han-Ping D. Shieh. Reflective Display Technologies[J]. Encyclopedia of Modern Optics (Second Edition),2018,3: 79-85.

[71] Hiroyuki Ohshima.Mobile display technologies: Past,present and future[J]. 2014 IEEE Asian Solid-State Circuits Conference (A-SSCC),2014: 1-4.

[72] Ouren X. Kuiper,Jelte E. Bos,Cyriel Diels. Looking forward: In-vehicle auxiliary display positioning affects carsickness[J]. Applied Ergonomics,2018,68: 169-175.

[73] Jung-Young Son,Hyoung Lee,Beom-Ryeol Lee,et al. Holographic and Light-Field Imaging as Future 3-D Displays[J]. Proceedings of the IEEE,2017,105(5): 789-804.

[74] Jesse R. Manders,Lei Qian,Alexandre Titov,et al. Next-Generation Display Technology: Quantum-Dot LEDs[J]. Journal of SID,2015,46(1): 73-75.

[75] Y. Choi,W. Szpankowski. Compression of Graphical Structures: Fundamental Limits and Algorithms and Experiment[J]. IEEE Trans. Information Theory,2012,58: 620-638.

[76] Erik P. DeBenedictis,Mustafa Badaroglu,An Chen,et al. Sustaining Moore's law with 3D chips[J]. Computer,2017,50: 69-73.

[77] M. C. Stone. Representing colors as three numbers [J]. IEEE Computer Graphics and Applications,2005,25(4): 78-85.

[78] Kaziev,I. A.,Rumyantsev,P. A.,Sauta,O. I.,et al. Estimating the contrast in metric color space with luminance,saturation,and hue coordinates[J]. Journal of Optical Technology,2015,82(9): 629-633.

[79] Seo C T ,Kang S W,Cho M. Three-dimensional free view reconstruction in axially distributed image sensing[J]. Chinese Optics Letters,2017(8):44-47.

[80] Brues A M. A genetic analysis of human eye color[J]. American Journal of Physical Anthropology,2010,4(1):1-36.

[81] Curcio C A,Allen K A. Topography of ganglion cells in human retina.[J]. Journal of Comparative Neurology,2010,300(1):5-25.

[82] Jeon S,Lee W K,Lee K,et al. Diminished ciliary muscle movement on accommodation in myopia[J]. Experimental Eye Research,2012,105(9):9-14.

[83] Allen P M,Charman W N,Radhakrishnan H. Changes in dynamics of accommodation after accommodative facility training in myopes and emmetropes[J]. Vision Research,2010,50(10):947-955.

[84] Qungang Ma. Development Regularity of Display Technology Based on Display Information Quantity[C]. The 14th China Electronic Information Technology Conference,Hefei,China,20-21,April,2019.

[85] Ishinabe Takahiro,Kawakami Tohru,Uchida Tatsuo,et al. Floating Autostereoscopic 3D Display with Variable Viewing Area for Multi-View Teleconference System[J]. IEEE Transactions on Electronics Information & Systems,2014,134(10):1423-1428.

[86] 野地保,有野真史周藤安造. 3D画像支援のP2P型医療連携ァーキテクチャの構築と評価[J]. Medical Imaging Technology,2010,28(4):264-270.

[87] Okada T,Marius G L,Hori M,et al. Abdominal multi-organ segmentation of 3DCT images based on hierarchical statistical modeling of spatial interrelations among organs: Performance evaluation based on exhaustive analysis of spatial interrelations[J]. 電子情報通信学会技術研究報告. mi,医用画像,2012,111:197-201.

[88] Yu X B,Sang X Z,Chen D,et al. Autostereoscopic three-dimensional display with high dense views and the narrow structure pitch[J]. Chinese Optics Letters,2014,12(6):30-33.