跳到主要內容

簡易檢索 / 詳目顯示

研究生: 吳冠民
Guan-Min Wu
論文名稱: 腔體導光式之線形化車後燈設計之研究
The Study of the Design with Cavity Light Guide for Line-structured Vehicle Tail Lamp
指導教授: 孫慶成
楊宗勳
口試委員:
學位類別: 碩士
Master
系所名稱: 理學院 - 照明與顯示科技研究所
Graduate Institute of Lighting and Display Science
論文出版年: 2016
畢業學年度: 104
語文別: 中文
論文頁數: 77
中文關鍵詞: LEDs二階光學設計車後燈導光條擴散片
相關次數: 點閱:15下載:0
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 本論文中,我們提出一個以LED當作光源的腔體式導光條之二階光學設計,並將其應用在表面均勻發光又具有立體感之線形車後燈,其中包含分析不同導光條結構對於光源直接漏光的影響,以及擴散片穿透率對均勻度之關係。此外,我們亦將此光學設計應用在實際的例子中,設計出一款自行車之車後燈,並且符合德國K-mark法規之規範。

    關鍵字 : LEDs,二階光學設計,車後燈,導光條,擴散片。


    In this thesis, we provide a secondary optical design of cavity light guide with LEDs, and apply to a line-structured vehicle tail lamp which is uniform on the light-emitting surface and stereoscopic. The analysis includes the light leakage issue with different light guide structures and the unifomity depending on the transmittance of the diffuser. Finally, this optical design is utilized in the tail lamp of bicycle to meet the K-mark regulation of Germany.

    Keywords : LEDs, secondary optical design, tail lamp, light guide, diffuser

    目錄 摘要 i Abtract ii 誌謝 iii 目錄 vi 圖目錄 ix 表目錄 xii 第一章 緒論 1 1-1 研究背景 1 1-2 研究動機與目的 4 1-3 論文大綱 6 第二章 基本原理 7 2-1 基本幾何光學原理 7 2-1-1 反射定律 8 2-1-2 折射定律 9 2-2 光度學 11 2-2-1 光度計量與單位 12 2-3 雙向散射分布函數 16 第三章 車後燈種類與法規規範之整理與分析 19 3-1 車後燈產品分析 19 3-1-1 傳統式車後燈 20 3-1-2 陣列式 LED 車後燈 21 3-1-3 側打式導光 LED 車後燈 22 3-1-4 OLED 車後燈 25 3-2 車後燈法規整理 27 3-2-1 美國 SAE 法規 27 3-2-2 歐洲 ECE 法規 28 3-2-3 德國自行車之規範 30 3-3 總結 31 第四章 腔體導光條之研究 32 4-1 腔體導光車燈初階光學設計 33 4-1-1 導光結構 34 4-1-2 腔體出光面加入擴散片模擬 38 4-2 實驗製作與驗證 42 4-3 腔體導光條設計應用於自行車尾燈 45 4-3-1 導光條之立體化 46 4-3-2 自行車車後燈設計之實驗結果 46 4-4 總結 49 第五章 結論 50 參考文獻 52

    參考文獻
    [1] T. A. Edison, “Improvement in electric light,” US Patent No. 214,636(1878)
    [2] M. Josephson, Edison: a biography (McGraw-Hill, New York, 1959).
    [3] R. Kane, and H. Sell, Revolution in Lamps: A Chronicle of 50 Years of Progress (The Fairmont Press, 2001).
    [4] J. Kaufman, IES Lighting Handbook 1981 Reference Volume (Illuminating Engineering Society of North America, New York, 1981).
    [5] B. W. D'Andrade and S. R. Forrest, “White organic light‐emitting devices for solid‐state lighting,” Adv. Mater. 16, 1585-1595 (2004).
    [6] E. F. Schubert and J. K. Kim, “Solid-state light sources getting smart,” Science 308, 1274-1278 (2005).
    [7] Philips website, http://www.lighting.philips.com/us_en/connect/professional/hid.wpd.
    [8] D. A. Steigerwald, J. C. Bhat, D. Collins, R. M. Fletcher, M. O. Holcomb, M. J. Ludowise, P. S. Martin, and S. L.Rudaz, “Illumination with solid state lighting technology,” IEEE J. Select. Topics Quantum Electron. 8, 310-320 (2002).
    [9] A. Zukauskas, M. S. Shur, and R. Caska, Introduction to Solid-state Lighting (John Wiley & Sons, New York, 2002).
    [10] E. F. Schubert, Light-Emitting Diodes, 2nd ed. (Cambridge University Press, Cambridge, 2006).
    [11] M. G. Craford, “LEDs for solid state lighting and other emerging applications: status, trends, and challenges,” Proc. SPIE 5941, 1-10 (2005).
    [12] 孫慶成,LED 的效率極限與照明光學設計的極致,LED固態照明研討會論文集,中華民國九十八年。
    [13] Cree News, http://www.cree.com/News-and-Events/Cree-News/Press-Releases/2014/March/300LPW-LED-barrier.
    [14] D. A. Steigerwald, J. C. Bhat, D. Collins, R. M. Fletcher, M. O. Holcomb, M. J. Ludowise, P. S. Martin, and S. L. Rudaz, “Illumination with solid state lighting technology,” IEEE J. Select. Topics Quantum Electron. 8, 310-320 (2002).
    [15] International Energy Agency, Light’s Labour’s Lost : Policies for Energy- efficient Lighting (OECD/IEA, Paris, 2006).
    [16] F. E. Nicodemus, “Directional reflectance and emissivity of an opaque surface,” Appl. Opt. 4, 767 (1965).
    [17] E. Hecht, Optics, 4th ed. (Addison Wesley, San Francisco, 2002).
    [18] V. N. Mahajan, Fundamentals of Geometrical Optics (SPIE PRESS, Washington, 2014).
    [19] 孫慶成,光電工程概論,全華圖書股份有限公司,中華民國一百零一年。
    [20] CIE 1988 2° spectral luminous efficiency functions of photopic vision, CIE Publication No. 86 (1988).
    [21] P. S. Heckbert, “Simulating global illumination using adaptive meshing,” PhD Thesis, University of California, Berkeley (1991).
    [22] F. E. Nicodemus, “Directional reflectance and emissivity of an opaque surface,” Appl. Opt. 4, 767 (1965).
    [23] V. N. Mahajan, Optical Imaging and Aberrations, Part Ι Ray Geometrical Optics (SPIE PRESS, Washington,1998).
    [24] R. W. Boyd, Radiometry and the Detection of Optical Radiation (John Wiley & Sons, New York ,1983).
    [25] Harold Wallace, A Different Kind of Chemistry: A History of Tungsten Halogen Lamps, IEEE Industry Applications Magazine (2001).
    [26] Office of Energy Efficiency & Renewable Energy,
    http://energy.gov/eere/energybasics/articles/high-intensity-discharge-lighting-basics.
    [27] 陳晉玄, “汽車尾燈座,” Taiwan patent, 094305128 (2006).
    [28] Well and Christopher, “Real light for motor vehicles,” Taiwan Patent, TW D165830 (2013).
    [29] 林明峰、黃競賢、蔡明憲, “導光條光學架構,” Taiwan Patent, TW 100224094 (2011).
    [30] M. Gebauer and S. Wiersdorff, “Lighting mechanism,” US Patent, 7494257B2 (2009).
    [31] G. Jin, Y. Yan, and S. Fan, “High quality light guide plates that can control the illumination angle based on microprism structures,” Appl. phys. lett. 85, 6016-6018 (2004).
    [32] J. X. Chen, J. D. Chen, and C. Z. Wu, White OLED lighting (Wunan, 2009).
    [33] M. Hagemann and M. Brinkmann “Optical and electronic luminance homogenization for OLED devices,” ISAL. 13, 648–654 (2009).
    [34] 3M Innovative Properties Company (US), “Variable pitch structured optical film,” US Patent, No. 05919551 (1999).
    [35] AUDI Website, http://www.audi.com.tw/tw/brand/zh.html.
    [36] SAE INTERNATIONAL, http://www.sae.org/.
    [37] United Nations Economic Commission for Europe - Official Site,
    http://www.unece.org/info/ece-homepage.html.
    [38] Kraftfahrt-Bundesamt, http://www.kba.de/.
    [39] BRO ASAP, http://www.breault.com/software/asap-features.
    [40] C. C. Sun, W. T Chien, I. Moreno, C. T Hsieh, M. C Lin, S. L. Hsiao, and X. H. Lee, “Calculating model of light transmission efficiency of diffusers attached to a lighting cavity,” Opt. Express 18, 6137-6148 (2010).
    [41] T. X. Lee, K. F. Gao, W. T. Chien, and C. C. Sun, “Light extraction analysis of GaN-based light-emitting diodes with surface texture and/or patterned substrate,” Opt. Express 15, 6670-6676 (2007).

    QR CODE
    :::