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研究生:曾俊瑋
研究生(外文):TSENG,CHUN-WEI
論文名稱:發光二極體照明光源之現色性研究
論文名稱(外文):Color Rendering of Illumination Light Source by Using Light-Emitting Diodes
指導教授:陳昭翰黃登淵黃登淵引用關係
指導教授(外文):CHEN,CHAO-HANHUANG,TENG-YUAN
口試委員:范榮權陳坤麟陳昭翰
口試委員(外文):FAN,JUNG-CHUANCHEN,KUN-LINCHEN,CHAO-HAN
口試日期:2014-07-30
學位類別:碩士
校院名稱:大葉大學
系所名稱:電機工程學系
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2014
畢業學年度:102
語文別:中文
論文頁數:52
中文關鍵詞:發光二極體固態照明光源現色性
外文關鍵詞:light-emitting diodesolid-state light sourcecolor rendering
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照明光源最重要的兩項特性就是發光效率與現色性,目前採用發光二極體之固態照明光源發光效率已經超過白熾燈、螢光燈(俗稱日光燈),而現色性雖然已與螢光燈相當,但如欲取代美術館、畫廊、花店……等等需要高現色性光源場所採用的鹵素燈,則必須將平均現色性指數提升至90以上。
要持續提高發光效率並提升現色性,採用紅綠藍三原色的發光二極體混光之方法為未來之主流。

The two most important characteristics of light source are luminous efficiency and color rendering. The luminous efficiency of solid-state light source by using light-emitting diode is higher than incandescent lamp and fluorescent lamp. Though color rendering of solid-state light source and fluorescent lamp are equivalent now, the general color-rendering index still needs to be increased to above 90 for superseding halogen lamps which are used in establishments need high color-rendering light source, such as museums of fine arts, picture gallery, flower shop, etc.
In the future, the mainstream for increasing luminous efficiency and color rendering of solid-state light source is composition with the three primary colors (RGB) of light-emitting diodes.

目錄

封面內頁
簽名頁
中文摘要………...................................................................................iii
英文摘要...............................................................................................iv
誌謝…………………………………………………………………....v
目錄…………………………………………………………………...vi
圖目錄……………………………………………………………….viii
表目錄………………………………………………………………....x

第一章 緒論…………………………………………………………1
    1.1 研究背景……….…………………...……………..…...1
    1.2 研究動機與目的…………………………………….....2
    1.3 論文架構…………………...……………………..........3
第二章 文獻探討……………………………………………………4
    2.1發光二極體……………………………………………...4
    2.2現色指數………………………………………………...9
2.3現色性指數的問題…………………………………….10
第三章 照明原理與現色性分析......................................................12
    3.1光度學………………………………………………….12
    3.2色度學………………………………………………….15
    3.3色溫與相關色溫……………………………………….19
    3.4現色性………………………………………………….22
    3.5現色性之計算………………………………………….25
第四章 結果與討論…………………………………………..……27
    4.1光譜儀與選用之發光二極體………………………….27
    4.2現色性計算結果……………………………………….32
第五章 結論......................................................................................39
參考文獻……………………………………………………………..40




參考文獻

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[3] Arpad Bergh, George Craford, Anil Duggal, and Roland Haitz, “The Promise and Challenge of Solid-State Lighting,” Physics Today, vol. 54, no. 12, pp. 42–47, Dec. 2001.
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[6] Subramanian Muthu, Frank J. P. Schuurmans, and Michael. D. Pashley, “Red, Green, and Blue LEDs for White Light Illumination,” IEEE J. Sel. Topics. Quantum Electron., vol. 8, no. 2, pp. 333–338, Mar./Apr. 2002.
[7] Daniel A. Steigerwald, Jerome C. Bhat, Dave Collins, Robert M. Fletcher, Mari Ochiai Holcomb, Michael J. Ludowise, Paul S. Martin, and Serge L. Rudaz, “Illumination With Solid State Lighting Technology,” IEEE J. Sel. Topics. Quantum Electron., vol. 8, no. 2, pp. 310–320, Mar./Apr. 2002.
[8] Y.-L. Li, Th. Gessmann, E. F. Schubert, and J. K. Sheu, “Carrier dynamics in nitride-based lightemitting p-n junction diodes with two active regions emitting at different wavelengths,” J. Appl. Phys., vol. 94, pp. 2167–2172, 2003.
[9] Mary H. Crawford, “LEDs for Solid-State Lighting: Performance Challenges and Recent Advances,” IEEE J. Sel. Topics. Quantum Electron., vol. 15, no. 4, pp. 1028–1040, July/Aug. 2009.
[10] Artūras Žukauskas, Rimantas Vaicekauskas, Feliksas Ivanauskas, Henrikas Vaitkevičus, Pranciškus Vitta, and Michael S. Shur, “Statistical Approach to Color Quality of Solid-State Lamps,”IEEE J. Sel. Topics. Quantum Electron., vol. 15, no. 6, pp. 1753–1762, Nov./Dec. 2009.
[11] Jeffrey Y. Tsao, Michael E. Coltrin, Mary H. Crawford, and Jerry A. Simmons, “Solid-State Lighting: An Integrated Human Factors, Technology, and Economic Perspective,” Proc. IEEE, vol. 98, no. 7, pp. 1162–1179, July 2010.
[12] Inês Lima Azevedo, M. Granger Morgan, and Fritz Morgan, “The Transition to Solid-State Lighting,” Proc. IEEE, vol. 97, no. 3, pp. 481–510, Mar. 2009.
[13] 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., vol. 8, pp. 310-320, 2002.
[14] 劉如熹,王健源,「白光發光二極體製作技術:21世紀人類的新曙光」,全華科技圖書股份有限公司(2001)。
[15] Philips Lumileds Lighting Company, http://www.philipslumileds.com/
[16] Philips Lumileds Luxeon Company,“Application Brief B07, Lumen Maintenance of White Luxeon Power Light Sources,” March 3, 2006.
[17] CIE Technical Report (1995),“Method of Measuring and Specifying Colour Rendering Properties of Light Sources,”CIE Central Bureau, Vienna.
[18] E. Fred Schubert, Light-Emitting Diodes, 2nd ed. Cambridge, UK: Cambridge University Press, 2006.
[19] H. Yaguchi, Y. Takahashi, and S. Shiori,“A Proposal of Color Rendering Index Based On Categorical Color Names,”Proc. International Lighting Congress, 2001.
[20] F. Szabó, P Bodrogi, and J Schanda,“A colour harmony rendering index based on predictions of color harmony impression,”Lighting Research and Technology, vol. 41, no. 2 pp. 165-182, 2009.
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[22] W. Davis and Y. Ohno,“Towards an improved color rendering metric,” Fifth International Conference on Solid State Lighting, Proc. SPIE, vol. 5941, pp. 59411G1–59411G8, 2005.
[23] M. Ronnier Luo,“The quality of light source,”Coloration Technology, vol. 127, no. 2, pp. 75–87, April 2011



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