博碩士論文 942206034 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:16 、訪客IP:3.137.180.122
姓名 李祐銘(Yo-Min Lee)  查詢紙本館藏   畢業系所 光電科學與工程學系
論文名稱 LED間斷式驅動對色度表現之影響
(Effects of On-off Driving on Colorimetric Behaviors for LEDs)
相關論文
★ 新型光電生化感測器之分析與研究★ 薄膜電晶體液晶顯示器中視角色偏之優化補償方法
★ 特定色度背光模組零組件之光學特性評估★ 電子紙增亮分析與模擬設計
★ 生物晶片螢光檢測之光源模型探討★ 介電電濕式數位微流體驅動系統之探討
★ 發光二極體照明系統之色彩特性優化設計★ 以EWOD為基礎的長鏈高分子原位合成器
★ 色盲量化測試系統之研究★ 可調式自然日光模擬光源之製作
★ 演色性評估之相關性指標★ 亞精胺影響下DNA構形與DNA碎片分佈之研究
★ 生物晶片之螢光光學檢測★ 生物晶片螢光分析之微光學模組
★ 光學式生化反應即時偵測系統★ 微液滴驅動之研究與探討
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 近年來LED的應用越來越廣泛,但是LED的熱效應問題始終無法得到很好的改善方式,熱效應會影響LED的壽命、色度、亮度。為了改善LED熱效應問題,其中一個方法就是以間歇式做為驅動。
本研究主要是針對LED以間歇式驅動所產生的色度偏移現象做探討。當LED以間歇式驅動時,在狀態切換的過程會造成色度偏移,為了量測此色度的偏移量,本文利用白光、紅光、綠光、藍光LED,以光譜儀進行量測,將光譜資訊轉成CIE xy色度座標,發現此偏移量與電流大小有關。同時,利用RGB三色LED模擬混色D65光源,發現在狀態切換過程的中,CIE色度座標最大偏移超過0.09,與D65色度座標附近的MacAdam橢圓比較,人眼不可分辨的範圍大約是0.002之內,因此,這樣的色度偏移量是相當嚴重的情形。
摘要(英) All the technologies related to the development of the LED (lighting-emitting diodes) have been rapidly evolved for the applications both in the general lighting and the display technology. However, before it successes, there are still some critical concerns to be overcome, especially the heat dissipation. One most common recommendation is to drive LEDs with on-off intermittent type of the current sources, for example the pulse-width-modulation (PWM) driving.
In this work, it is focused on the chromaticity shift caused by the on-off intermittent type of the driving on LEDs. As expected, the chromaticity will do shift during the transition of each on and/or off instance. Concludingly, the CIE xy chromaticity does have deviation as much as 0.09 during the transitions. The resultant chromatic shifts are found to be greatly larger than the minimal sensitivity of the human vision, 0.002.
關鍵字(中) ★ 間斷式驅動
★ 色度
★ 發光二極體
關鍵字(英) ★ PWM
★ colorimetric
★ LED
論文目次 中文摘要.....................................iv
英文摘要.....................................v
誌謝.........................................vi
目錄.........................................vii
圖目錄.......................................viii
表目錄.......................................xi
第一章 續論.................................1
1-1 研究背景.............................. 1
1-2 研究動機.............................. 2
1-3 論文內容安排.......................... 4
第二章 色彩科學概論........................ 5
2-1 可見光................................. 5
2-2 CIE表色系統............................ 7
2-3 混色原理............................... 12
2-4 CIE標準光.............................. 15
第三章 實驗架構............................. 17
3-1 實驗架構............................... 17
第四章 實驗結果與分析.......................32
4-1 單色LED色度偏移結果.................... 32
4-2 RGB LED混色D65色座標偏移結果.......... 44
第五章 結論與未來工作........................56
參考文獻.....................................58
參考文獻 [1] 劉如熹 and 林益山, “人類未來照明的夢想,” 科學發展月刊 390, 57-59 (2005).
[2] 孫培真 and 黃建晃, “新世代節能環保照明,” 生活科技教育月刊 38, 104-113 (2005).
[3] 石大成, “新世紀照明啟用-半導體LED節能照明發展暨應用,” 能源報導 8, (2004)
[4] J. H. Kim, M. Y. Park, J. J. Kim, H. Kim, J. H. Jun, J. H. Park, S. M. Cho, D. W. Lee, S. R. Hwang, and H. S. Jeong,“High-efficiency Trichromatic LED Backlight for Mobile LCDs,”, Proc. SPIE 6134, 613409 (2006).
[5] R. S. West, “High Brightness Direct LED Backlight for LCD-TV,” SID Symposium Digest of Technical Papers 34, 1262-1265 (2003).
[6] G. Harbers, W. Timmers and W. Sillevis-Smitt, “LED Backlight for LCD HDTV,” Journal of the Society for Information Display 10, 347-350 (2004).
[7] G. Harbers, “High Performance LCD Backlighting using High Intensity Red, Green and Blue Lighting Emitting Diodes,” SID Symposium Digest of Technical Papers 32, 702-705 (2001).
[8] Y. Taira, H. Numata, D. Nakano, K. Sueoka, F. Yamada, M.Suzuki, M. Noguchi, R. Singh, and E. G. Colgan, “Color Filterless Liquid Crystal Display Illuminated with LEDs,” SID Symposium Digest of Technical Papers 34, 1250-1253 (2003).
[9] S. Y. Yeung, Y. W. Li, L. Tan, J. Y. L. Ho, K. K. Li, W. S. Cheung, and H. S. Kwok, “Sequential Color LCD Using No-bias Bend Mode,” SID Symposium Digest of Technical Papers 3801, 677-679 (2007).
[10] T. Uchida, K. Saitoh, T. Miyashita, and M. Suzuki, “Field Sequential full Color LCD without Color Filter for AM-LCD,” SID Symposium Digest of Technical Papers 97, 37-40 (1997).
[11] S. Muthu, F. Schuurmans, and M. Pashley, “Red, Green and Blue LED for White Light Illumination,” IEEE journal on Selected Topics in Quantum Electronics 8, 333-338 (2002).
[12] R. Lu, Q. Hong, Z. Ge, and S. T. Wu, “Color Shift Reduction of a Multi-domain IPS-LCD using RGB-LED Backlight,” Opt. exp. 14, 6243-6252 (2006).
[13] A. Perduijn, S. Krijger, J. Claessens, N. Kaito, T. Yagi, S. Hsu, M. Sakakibara, T. Ito, and S. Okada, “Light Ouput Feedback Solution for RGB LED Backlight Application,” SID Symposium Digest of Technical Papers 34, 1254-1257, (2003).
[14] S. Muthu, F. Schuurmans, and M. D. Pashley, “Red, Green and Blue LED Based White Light Generation: Issues and Control,” 37th IAS Annual Meeting. Record of the Industry Applications Conference 1, 327-333 (2002).
[15] S. Robinson, and I, Ashdown, “Polychromatic Optical Feedback Control, Stability, and Dimming,” Proc. SPIE 6337, 633714 (2006).
[16] M. Dyble, N. Narendran, A. Bierman, and T. Klein, “Impact of dimming white LEDs: chromaticity shifts due to different dimming methods,” Proc. SPIE 5941, 291-299 (2005).
[17] D. S. Falk, D. R. Brill, D. G. Stork, and M. J. Ruiz, Seeing the Light: Optics in Nature, Photography, Color, Vision, and Holography (Wiley, New York, 1986)
[18] R. S. Berns, Billmeyer and Saltzman’s Principles of Color Technologym, (Wiley, New York, 2000).
[19] 網路資料, http://www.netl.doe.gov/ss1/image/illumination/wavelength.jpg.
[20] I. Newton, “A New Theory about Light and Colors,” Philos. Trans. R. Soc. 80, 3075-3087 (1672).
[21] W. Wright, “A Re-determination of the Trichromatic Coefficients of the Spectral Color,” Trans. Opt. Soc. 30, 141-164 (1929).
[22] W. Wright, “A Re-determination of the Mixture Curves of the Spectrum,” Trans. Opt. Soc. 31, 201-218 (1930).
[23] L. Sharpe and K. R. Gegenfurtner, Color Vision: From Genes to Perception (Cambrigde University Press, 2001).
[24] J. Guild, “The Colorimetric Properties of the Spectrum,” Philos. Trans. R. Soc. 230, 149-187 (1932).
[25] E. Carter, “Colorimetry,” Publ. CIE 15 (2004).
[26] 大田登(著), 陳鴻興 and 陳君彥(譯), 基礎色彩再現工程, (全華,2003).
[27] G. Wyszecki, and W. S. Stiles, Color science (Wiley, New York, 1982).
[28] R. W. G. Hunt, Measuring Colour (ELLIS HORWOOD, 1991).
[29] 林維屏, “LED光源新式應用之研究,” (國立中央大學光電科學研究所, 民國九十五年).
[30] CIE, “CIE Standard Illuminants for Colorimetry,” CIE standard S005 (1999).
[31] I. Powell, “Quartz-halogen D65 Simulation,” Appl. Opt. 34, 7925-7934(1995).
[32] A. Corrons, and A. Pons, “Daylight Simulator,” Appl. Opt. 26, 2867-2870 (1987).
[33] J. Dobrowolski, “Optical Interference Filters for the Adjustment of Spectral Response and Spectral Power Distribution,” Appl. Opt. 9, 1396-1402 (1970).
[34] F. Grum, “Artificial Light Sources for Simulating Natural Daylight and Skylight,” Appl. Opt. 7, 183-187 (1968).
[35] H. Terstiege, “Artificial Daylight for Measurement of Optical Properties of Materials” , Col. Res. Appl. 14, 131-138 (1989).
[36] S. J. Chang, and C. S. Chang, “650nm ALGaInP/GaInP Compressively Strained Multi-Quantum Well Light Emitting Diodes,” J. J. Appl. Phys 37 653-655 (1998).
[37] A. Bierman, P. Boyce, C. Hunter, J. Bullough, M. Figuerio, and K. Conway, “The Effect of Rise Time on Detection of Traffic Signals,” Light Research Center Rensselaer Polytechnic Institute (2000).
指導教授 楊宗勳(Tsung-Hsun Yang) 審核日期 2007-7-23
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明