參考文獻 |
[1] Wikipedia website, https://de.wikipedia.org/wiki/Heinrich_Gobel.
[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] N. Holonyak and S. F. Bevaqua, “Coherent (visible) light emission from Ga(As1–xPx) Junctions,” Appl. Phys. Lett. 1, 82 (1962).
[12] S. Nakamura and G. Fasol, The Blue Laser Diode: GaN based light emitters and lasers (Spinger, 1997).
[13] Y. Shimizu, K. Sakano, Y. Noguchi, and T. Moriguchi, “Light emitting device having a nitride compound semiconductor and a phosphor containing a garnet fluorescent material,” United States Patent, US5998925 (1999).
[14] R. Mueller-Mach, G. Mueller, and M. R. Krames, H. A. Hoppe, F. Stadler, W. Schnick, T. Juestel, and P. Schmidt, “Highly efficient all-nitride phosphor- converted white light emitting diode,” Phys. Stat. Sol. 202, 1727-1732 (2005).
[15] A. A. Setlur, A. M. Srivastava, H. A. Comanzo, and D. D. Doxsee, “Phosphor blends for generating white light from near-UV/blue light-emitting devices,” United States Patent, US6685852 B2 (2004).
[16] J. K. Sheu, S. J. Chang, C. H. Kuo, Y. K. Su, L. W. Wu, Y. C. Lin, W. C. Lai, J. M. Tsai, G. C. Chi, and R. K. Wu, “White-light emission from near UV InGaN-GaN LED chip precoated with blue/green/red phosphors,” IEEE Photon. Technol. Lett. 15, 18-20 (2003).
[17] L. Vriens, G. Acket, and C. Ronda, “UV/blue LED–phosphor device with efficient conversion of UV/blues light to visible light,” United States Patent, US5813753 B2 (1998).
[18] S. C. Allen and A. J. Steckl, “ELiXIR??? solid-state luminaire with enhanced light extraction by internal reflection,” J. Display Technol. 3, 155-159 (2007).
[19] S. Jeon, P. Eun, Y. H. Park, Choi, J. C. Park, H. Lee, Gwang Chul, Kim, and T. Whan “White-light generation through ultraviolet-emitting diode and white-emitting phosphor,” Appl. Phys. Lett. 85, 3696-3698 (2004).
[20] T. F. McNulty, D. D. Doxsee, and J. W. Rose, “UV reflector and UV-based light source having reduced UV radiation leakage incorporating the same,” United States Patent, US6686676 B2 (2004).
[21] Y. Sato, N. Takahashi, and S. Sato, “Full-color fluorescent display devices using a near-UV light-emitting diode,” Jpn. J. Appl. Phys. 35, 838-839 (1996).
[22] S. Muthu, “Controlling method and system for RGB based LED luminary,” United States Patent, US6507159 B2 (2003).
[23] S. Muthu, F. J. P. Schuurmans, and M. D. Pashley, “Red, green, and blue LEDs for white light illumination,” IEEE J. Sel. Top. Quantum Electron. 8, 333-338 (2002).
[24] C. C. Sun, I. Moreno, Y. C. Lo, B. C. Chiu, and W. T. Chien, “Collimating lamp with well color mixing of red/green/blue LEDs,” Opt. Express 20, A75–A84 (2012).
[25] M. G. Craford, “LEDs for solid state lighting and other emerging applications: status, trends, and challenges,” Proc. SPIE 5941, 1-10 (2005).
[26] 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。
[27] Cree News, http://www.cree.com/News-and-Events/Cree-News/Press-Releases/2014/March/300LPW-LED-barrier.
[28] 空中玫瑰探照燈, https://hengyilight.cn.made-in-china.com.
[29] 空中玫瑰探照燈, https://gzhzglighting.cn.china.cn.
[30] 500W LED 港口燈, http://www.fengled.com.
[31] 360W 船用探照燈, http://yarui268.dzsc.com.
[32] H. Ries and J. A. Muschaweck, “Tailored freeform optical surfaces,” J. Opt. Soc. Am. A 19, 590–595 (2002).
[33] R. A. Hicks, “Designing a mirror to realize a given projection,” J. Opt. Soc. Am. A 22, 323–330 (2005).
[34] L. L. Doskolovich and S. I. Kharitonov, “Calculating the surface shape of mirrors for shaping an image in the form of a line,” J. Opt. Technol. 72, 318–321 (2005).
[35] B. Parkyn and D. Pelka, “Free-form illumination lens designed by a pseudo-rectangular lawnmower algorithm,” Proc. SPIE 6338, 633808-7 (2006).
[36] L. L. Doskolovich and M. A. Moiseev, “Calculations for refracting optical elements for forming directional patterns in the form of a rectangle,” J. Opt. Technol. 76, 430–434 (2009).
[37] J. J. Chen and C. T. Lin, “Freeform surface design for a light-emitting diode–based collimating lens,” Opt. Eng. 49, 093001 (2010).
[38] F. R. Fournier, W. J. Cassarly, and J. P. Rolland, “Fast freeform reflector generation using source-target maps,” Opt. Express 18, 5295–5304 (2010).
[39] M. A. Moiseev, L. L. Doskolovich, and N. L. Kazanskiy, “Design of high-efficient freeform LED lens for illumination of elongated rectangular regions,” Opt. Express 19, A225-A233 (2011).
[40] W. A. Parkyn and D. G. Pelka, “New TIR lens applications for light-emitting diodes,” Proc. SPIE 3139, 135–140 (1997).
[41] F. Fournier and J. Rolland, “Optimization of freeform lightpipes for light-emitting-diode projectors,” Appl. Optics 47, 957-966 (2008).
[42] J. C. Chaves, W. Falicoff, B. Parkyn, P. Benitez, J. C. Minano, “Increased brightness by light recirculation through an LED source,” Proc. SPIE 7059, 705902 (2008).
[43] H. J. Cornelissen, H. Ma, C. Ho, M. Li, and C. Mu, “Compact collimators for high brightness blue LEDs using dielectric multilayers,” Proc. SPIE 8123, 81230J (2011).
[44] C. C. Sun, T. X. Lee, S. H. Ma, Y. L. Lee, and S. M. Huang, “Precise optical modeling for LED lighting verified by cross correlation in the midfield region,” Opt. Lett. 31, 2193-2195 (2006).
[45] W. T. Chien, C. C. Sun, and I. Moreno, “Precise optical model of multi-chip white LEDs,” Opt. Express 15, 7572–7577 (2007).
[46] C. C. Sun, W. T. Chien, I. Moreno, C. C. Hsieh, and Y. C. Lo, ” Analysis of the far-field region of LEDs,” Opt. Express 17, 13918-13927 (2009).
[47] E. Hecht, Optics, 4th ed. (Addison Wesley, San Francisco, 2002).
[48] V. N. Mahajan, Optical Imaging and Aberrations: Part I Ray Geometrical Optics (SPIE PRESS, Washington, 1998).
[49] W. T. Welford, High Collection Nonimaging Optics, (Academic, SanDiego, Calif, 1989).
[50] R. Winston, Nonimaging Optics, (Academic, SanDiego, Calif, 2005).
[51] CIE 1988 2° spectral luminous efficiency functions of photopic vision, CIE Publication No. 86 (1988b).
[52] H. Ries, N. Shatz, J. Bortz, and W. Spirkl, “Performance limitations of rotationally symmetric nonimaging devices,” J. Opt. Soc. Am. A 14, 2855-2862. (1997).
[53] 孫慶成,光電科技概論,全華圖書公司。
[54] Cree Inc., http://www.cree.com/LED-Components-and-Modules/Products.
[55] Osram Inc., http://www.osram-os.com/osram_os/en/products.
[56] 蔡直佑,高光效多功能投射光形之研究,國立中央大學光電所博士論文,中華民國一百零四年。
[57] BRO ASAP, http://www.breault.com/software/asap-features.
[58] Flashlight Basic Performance Standard, Approved as an American National Standard, (2009). |