參考文獻 |
[1] "發電量佔比." 台灣電力公司. https://www.taipower.com.tw/tc/Chart.aspx?mid=194
[2] M. A. Green, "Photovoltaic principles," Physica E: Low-dimensional Systems and Nanostructures, vol. 14, no. 1-2, pp. 11-17, 2002.
[3] H. Müller-Steinhagen and F. Trieb, "Concentrating solar power," A review of the technology. Ingenia Inform QR Acad Eng, vol. 18, pp. 43-50, 2004.
[4] S. N. Bureau. "Unveiling the Solar Water Heating System Technology." SAUR ENERGY. https://www.saurenergy.com/solar-energy-blog/unveiling-the-solar-water-heating-system-technology
[5] "CIS Tower." https://en.wikipedia.org/wiki/CIS_Tower
[6] H. Apostoleris, M. Stefancich, and M. Chiesa, "Tracking-integrated systems for concentrating photovoltaics," Nature Energy, vol. 1, no. 4, pp. 1-8, 2016.
[7] P. Xie, H. Lin, Y. Liu, and B. Li, "Total internal reflection-based planar waveguide solar concentrator with symmetric air prisms as couplers," Optics express, vol. 22, no. 106, pp. A1389-A1398, 2014.
[8] D. Freier, R. Ramirez-Iniguez, T. Jafry, F. Muhammad-Sukki, and C. Gamio, "A review of optical concentrators for portable solar photovoltaic systems for developing countries," Renewable and sustainable energy reviews, vol. 90, pp. 957-968, 2018.
[9] P. Benítez et al., "High performance Fresnel-based photovoltaic concentrator," Optics express, vol. 18, no. 101, pp. A25-A40, 2010.
[10] W. Xie, Y. Dai, R. Wang, and K. Sumathy, "Concentrated solar energy applications using Fresnel lenses: A review," Renewable and Sustainable Energy Reviews, vol. 15, no. 6, pp. 2588-2606, 2011.
[11] R. Winston and H. Hinterberger, "Principles of cylindrical concentrators for solar energy," Solar Energy, vol. 17, no. 4, pp. 255-258, 1975.
[12] K.-K. Chong et al., "Dense-array concentrator photovoltaic system using non-imaging dish concentrator and crossed compound parabolic concentrator," in AIP conference proceedings, 2015, vol. 1657, no. 1: AIP Publishing.
[13] X. Ning, R. Winston, and J. O’Gallagher, "Dielectric totally internally reflecting concentrators," Applied optics, vol. 26, no. 2, pp. 300-305, 1987.
[14] J. C. Miñano, J. C. González, and P. Benítez, "A high-gain, compact, nonimaging concentrator: RXI," Applied Optics, vol. 34, no. 34, pp. 7850-7856, 1995.
[15] L. H. Slooff et al., "A luminescent solar concentrator with 7.1% power conversion efficiency," physica status solidi (RRL)–Rapid Research Letters, vol. 2, no. 6, pp. 257-259, 2008.
[16] J. H. Karp, E. J. Tremblay, and J. E. Ford, "Planar micro-optic solar concentrator," Optics express, vol. 18, no. 2, pp. 1122-1133, 2010.
[17] S.-Y. Hsiao, "側聚光型太陽能電池系統之容忍角增益研究," National Central University, 2017.
[18] E. Hecht, Optics 4ed. Addison-Wesley, 2001.
[19] "Sagitta (optics)." https://en.wikipedia.org/wiki/Sagitta_(optics)
[20] "Aspherical Lens." https://www.laserfocusworld.com/directory/finished-optics-coatings-components/lenses/blog/14223236/lacroix-precision-optics-what-is-an-aspherical-lens
[21] "圓錐係數對應之圖形." https://kknews.cc/zh-tw/news/v6q6o2a.html
[22] 李朱育、李敏鴻、李勝偉、柯文政、段生振、陳念波, 圖解:光電半導體元件. 五南出版.
[23] B. Negi, T. Kandpal, and S. Mathur, "Designs and performance characteristics of a linear Fresnel reflector solar concentrator with a flat vertical absorber," Solar & wind technology, vol. 7, no. 4, pp. 379-392, 1990.
[24] "AM1.5G spectrum." https://www2.pvlighthouse.com.au/resources/optics/spectrum%20library/spectrum%20library.aspx
[25] "PEC-L11 Specifications." http://www.optical-relation.com/PEC-L11%20Specifications%20PDF.pdf
[26] "Solar simulator catalog." http://hologenix.com/sites/default/files/PDFs/SolarSimulatorCatalog.pdf
[27] "High sensitivity thermal laser sensors." [Online]. Available: https://www.ophiropt.com/laser--measurement/cn/laser-power-energy-meters/products/Laser-Thermal-Power-Sensors/High-Sensitivity-Thermal-Laser-Sensors/3A-P-FS-12.
[28] "PV Analyzer Specifications." https://www.prova.com.tw/img/download/200A-Data%20Sheet-2015.pdf
[29] "refractive index liquids." https://www.cargille.com/refractive-index-liquids/ |