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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 光電工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/84512
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dc.contributor.advisor林晃巖(Hoang-Yan Lin)
dc.contributor.authorYu-Ming Huen
dc.contributor.author胡祐銘zh_TW
dc.date.accessioned2023-03-19T22:13:59Z-
dc.date.copyright2022-10-07
dc.date.issued2022
dc.date.submitted2022-09-23
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'Time‐multiplexed color image generation by viewing‐zone scanning holographic display employing MEMS‐SLM.' Journal of the Society for Information Display 25.8 (2017): 515-523. [13] Han, Zhe, et al. 'Color holographic display using single chip LCOS.' Applied Optics 58.1 (2019): 69-75. [14] Sato, Koki. 'Characteristics of kinoform by LCD and its application to display the animated color 3D image.' Practical Holography VIII. Vol. 2176. SPIE, (1994) [15] Makowski, Michal, et al. 'Color image projection based on Fourier holograms.' Optics letters 35.8 (2010): 1227-1229. [16] Gerchberg, Ralph W. 'A practical algorithm for the determination of plane from image and diffraction pictures.' Optik 35.2 (1972): 237-246. [17] Chien-Yu Chen, Wu-Chun Li, Hsuan-Ting Chang, Chih-Hao Chuang, and Tsung-Jan Chang, '3-D modified Gerchberg–Saxton algorithm developed for panoramic computer-generated phase-only holographic display,' J. Opt. Soc. Am. 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[25] Brian A. Wandell, Louis D. Silverstein, in The Science of Color (Second Edition), 2003 [26] J. Nakagawa, H. Yamaguchi, T. Yasuda, 'Head up display with laser scanning unit,' Proc. SPIE 11125, ODS 2019: Industrial Optical Devices and Systems, 111250C (30 August 2019) [27] Wikimedia Commons contributors, 'File:Vfd car.jpg,' Wikimedia Commons, the free media repository, https://commons.wikimedia.org/w/index.php?title=File:Vfd_car.jpg&oldid=503483662 (accessed July 22, 2022). [28] Calderhead, R. Glen. 'The photobiological basics behind light-emitting diode (LED) phototherapy.' Laser Therapy 16.2 (2007): 97-108. [29] 'A Taxonomy of Displays: Transmissive, Reflective, Emissive & More' FlatpanelsHD (2016) [30] Dunn, Cheraina, and Roland Höfling. 'Properties of the DMD digital micromirror device for new emerging applications in optical engineering.' Optical Measurement Systems for Industrial Inspection V 6616 (2007): 168-174. [31] Zhang, Zichen, Zheng You, and Daping Chu. 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IEEE Photonics Journal 13.5 (2021): 1-8. [37] H. Ottevaere, H. Thienpont, 'OPTICAL MICROLENSES, 'Encyclopedia of Modern Optics,Elsevier,Pages 21-43,ISBN 9780123693952(2005) [38] R.B.Wood,P.J.Howells, ”The Avionics Handbook, “Chapter 4 Head up displays, 2001. [39] G. Hollows, N. James, “Distortion,” Imaging Optics Resource Guide, section 3.3 [40] 'The Myth of High Contrast, ' BenQ (2020) [41] Strehl, Karl W. A. “Theory of the telescope due to the diffraction of light,“ Leipzig, (1894) [42] Goodman, Joseph W. Speckle phenomena in optics: theory and applications. Roberts and Company Publishers, (2007) [43] Dainty, J. Christopher, ed. Laser speckle and related phenomena. Vol. 9. Springer science & business Media, (2013) [44] Riechert, Falko, Georg Bastian, and Uli Lemmer. 'Laser speckle reduction via colloidal-dispersion-filled projection screens.' Applied optics 48.19 (2009): 3742-3749. [45] T. Yang, G.-F. Jin, and J. Zhu, “Automated design of freeform imaging systems,” Light: Sci. Appl. 6, e17081 (2017) [46] Feng, Zexin, et al. 'Creating unconventional geometric beams with large depth of field using double freeform-surface optics.' Applied optics 54.20 (2015): 6277-6281. [47] A. Bauer and J. P. Rolland, “Visual space assessment of two all-reflective, freeform, optical see-through head-worn displays,” Opt. Express 22, 13155–13163 (2014) [48] M. Beier, J. Hartung, T. Peschel, C. Damm, A. Gebhardt, S. Scheiding, D. Stumpf, U. D. Zeitner, S. Risse, R. Eberhardt, and A. Tünnermann, “Development, fabrication, and testing of an anamorphic imaging snap-together freeform telescope,” Appl. Opt. 54, 3530–3542 (2015) [49] Liu, Yue, et al. 'Optical distortion correction considering radial and tangential distortion rates defined by optical design.' Results in Optics 3 (2021): 100072. [50] 孟慶棠, “反射式薄型廣視角光學系統設計”碩士論文, 國立臺灣大學光電工程學研究所 (2018) [51] 卓奕辰, “應用全像投影之雙視距抬頭顯示器”碩士論文, 國立臺灣大學光電工程學研究所 (2021)
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/84512-
dc.description.abstract本論文提出一個基於LCoS全像多色投影之雙視距車用抬頭顯示器(Head up display, HUD),使用虛像投射概念設計,由雷射光源、自由曲面鏡、LCoS反射式面板,以及控制電路等組成,能使駕駛視線不離開行進方向路面的情況下,查看各項行車資訊,並保持行車中的安全。本論文以全像投影畫面作為顯示光源作為研究,相較於現今市售的車用抬頭顯示器多為嵌入式LCD顯示器投射為主,其系統受限於其面板大小、投影距離短且固定,能給予駕駛有限的視覺輔助。本研究能使用單一LCoS面板來達到多深度的投影,經由Code V模擬軟體設計出一雙深度的自由曲面鏡,遠近處的投影畫面分別為7公尺及2.5公尺,使其視場角(Field of View, FOV )達到分別為15°× 3°及6°× 2°,並且駕駛能在100毫米* 50毫米的eyebox範圍內,在近處(2.5公尺)觀看到一般的駕駛資訊如時速和油箱標誌,而在遠處(7公尺) 觀看到AR(Augmented Reality)的導航影像。 本研究是使用空間分工的方式來達到雙深度及多色的抬頭顯示器,由於抬頭顯示器體積需要盡可能縮小以及利用空間分工來達到混光,使最終優化後的系統中之影像有些許變形。為了消除此變形問題,本論文也進行了變形校正的理論並實際以演算法作修正。最後將設計出的系統的進行搭建,來驗證HUD系統的FOV、eyebox以及變形修正效果。zh_TW
dc.description.abstractWe propose a dual-focal-plane multi-color head-up display (HUD) based on LCoS holographic projection with virtual image.The HUD system consists of a laser light source, a freeform mirror, a LCoS reflective panel, and a control circuit. When the driver's sight does not leave the road in the direction of travel, check various driving information and maintain safety in driving. Compared with current commercial head-up displays based on LCD for vehicles, most of them are limited in short and fixed projection distance, and small projection area. In this study, a single LCoS panel can be used to achieve multi-depth projection. A pair of deep freeform mirrors are designed through the Code V simulation software. Field of View(FOV) reaches 15° × 3° and 6° × 2° respectively, and the driving can view general driving information in an eyebox of 100 mm by 50 mm. Speed and fuel tank signs can be seen at near distance (2.5 meters), and AR (Augmented Reality) navigation images can be seen at far distance (7 meters). In this study, the space-division multiplexing is used to achieve dual-depth and multi-color head-up displays. Since the volume of the head-up display needs to be reduced as much as possible and the space-division method is used to achieve light mixing, the images in the final optimized system are slightly deformed. In order to eliminate this distortion problem, we also carry out the theory of distortion correction and actually use the algorithm to correct it. Finally, the designed system is built to verify the FOV, eyebox and distortion correction effects of the HUD system.en
dc.description.provenanceMade available in DSpace on 2023-03-19T22:13:59Z (GMT). No. of bitstreams: 1
U0001-2109202215222700.pdf: 5412364 bytes, checksum: 03ec7ef4481039a1d05bebb098246e5f (MD5)
Previous issue date: 2022
en
dc.description.tableofcontents誌謝 i 摘要 ii Abstract iii 目錄 iv 圖目錄 vi 表目錄 viii 第一章 緒論 1 1-1 研究背景 1 1-2 文獻回顧 2 1-3 研究動機與目的 4 1-4 論文架構 5 第二章 全像投影系統 6 2-1 光學全像術(Holography) 6 2-2 數位全像術 (Digital Holography) 7 2-3 電腦生成全像術 (Computer Generated Holography, CGH) 7 2-3-1 電腦生成全像演算法 8 2-3-2 反射式矽基液晶空間光調變器 9 2-3-3 LCoS-SLM原理 10 2-4 電腦全像投影系統 12 第三章 抬頭顯示器 15 3-1 抬頭顯示器的演變種類 15 3-2 抬頭顯示器的結構 17 3-2-1 顯示影像 18 3-2-2 投影鏡組 23 3-2-3 疊像鏡 25 3-3 抬頭顯示器常用指標及量測 27 第四章 光學系統模擬及設計 36 4-1 規格設定 36 4-2 自由曲面鏡(Freeform mirror) 36 4-3 光學系統模擬 38 4-4 空間分工多色設計 44 第五章 實驗結果及變形修正 46 5-1 雙深度影像變形修正及實驗 47 5-2 空間分工多色實驗及調整 49 5-3 最終雙深度多色抬頭顯示器實驗結果 56 第六章 結論與未來展望 57 參考文獻 58
dc.language.isozh-TW
dc.subject抬頭顯示器zh_TW
dc.subject變形修正zh_TW
dc.subject擴增實境zh_TW
dc.subject全像投影zh_TW
dc.subject元宇宙zh_TW
dc.subject液晶覆矽zh_TW
dc.subjectLCoSen
dc.subjectPredistortionen
dc.subjectAugmented Realityen
dc.subjectHolographyen
dc.subjectMetaverseen
dc.subjectHead-up displayen
dc.title全像投影之雙視距多色抬頭顯示器zh_TW
dc.titleDual-focal-plane Multi-color Head Up Display with Holographic Imagingen
dc.typeThesis
dc.date.schoolyear110-2
dc.description.degree碩士
dc.contributor.oralexamcommittee黃定洧(Ding-Wei Huang),林淇文(Chi-Wen Lin)
dc.subject.keyword抬頭顯示器,液晶覆矽,元宇宙,全像投影,擴增實境,變形修正,zh_TW
dc.subject.keywordHead-up display,LCoS,Metaverse,Holography,Augmented Reality,Predistortion,en
dc.relation.page61
dc.identifier.doi10.6342/NTU202203730
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2022-09-24
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept光電工程學研究所zh_TW
dc.date.embargo-lift2027-09-21-
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