| 研究生: |
李泰陞 Lee, Tai-sheng |
|---|---|
| 論文名稱: |
最大功率追蹤應用於太陽能輔助動力船之開發 Application of Maximum Power Point Tracking Technique to the Development of Solar-Energy-Auxiliary-Power Ship |
| 指導教授: |
趙儒民
Chao, Ru-Min |
| 學位類別: |
碩士 Master |
| 系所名稱: |
工學院 - 系統及船舶機電工程學系 Department of Systems and Naval Mechatronic Engineering |
| 論文出版年: | 2009 |
| 畢業學年度: | 97 |
| 語文別: | 中文 |
| 論文頁數: | 102 |
| 中文關鍵詞: | 光伏效應 、最大功率點追蹤 、儲能系統 、太陽能模擬器 、二項式法 、太陽能電池 |
| 外文關鍵詞: | energy stored system, quadratic method, MPPT, photovoltaic effect, solar cell, Solar Array Simulator |
| 相關次數: | 點閱:139 下載:2 |
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太陽能輔助動力船應包含太陽能發電系統及電池儲能系統。為了
有效運用太陽能電池的光伏轉換效率(Photovoltaic effect),需配合最大功率追蹤技術,可使太陽能發電系統以最有效的方式取得電能並儲存於電池儲能系統。
本研究的目的,在於建立一套整合最大功率追蹤及儲能技術的太
陽能船電力系統;其中最大功率追蹤技術,主要是改善先前功率量測電路之缺失,再配合二項式法計算最大功率點,並結合調變PWM 訊號之脈寬比,精確的使太陽能電池提供最大的功率。配合太陽能模擬器(Solar Array Simulator, SAS),本論文已驗證現有太陽能最大功率追蹤演算法較文獻中各項追蹤法能更快速達到最大功率點。藉由本技術的建立,配合儲能系統之配置與測試,也完成太陽能輔助電力船之整合,其測試結果也將一併討論。
關鍵字:太陽能電池、光伏效應、最大功率點追蹤、二項式法、儲能系統、太陽能模擬器
Solar-energy-auxiliary-power ship includes solar array system and energy storage system. For better use of the photovoltaic effect of the solar cell, this work takes advantage of the newly developed Maximum Power Point Tracking (MPPT) technique for the solar array system to
maximize the power generated by the PV array, and to store the energy in the battery. In the proposed MPPT system, we improved the circuitry, and used the quadratic maximization method combining with PWM duty cycle adjustment to calculate the maximum power point. The use of Solar Array Simulator (SAS) has proven the proposed MPPT method is faster than other methods to track the maximum power point. By implementing the proposed MPPT technique with the energy storage system, we also build a solar-energy-auxiliary-power ship. The testing results will be also reported.
Key words: solar cell, photovoltaic effect, MPPT, quadratic method,energy stored system, Solar Array Simulator.
參考文獻
[1] Solar Boats Turn into Tourist Attractions, Rolf Hug, 2000.
[2] 黃正利、鄭勝文,未來的船,科學發展404期,pp. 50-55, 2006年8月。
[3] Z. Salameh, F. Dagher and W. A. Lynch,“ Step-Down Maximum Power Point Tracker for Photovoltaic System” , Solar Energy, Vol. 46, No. 1, pp. 278-282, 1991.
[4] K. Harada, G. Zhao, ”Controled Power Interface Between Solar Cells and AC Source” ,IEEE Trans. On Power Electronics, Vol. 8,No. 4, pp. 654-662, 1993.
[5] F. Harashima and H. Inaba, “Microprocessor Controlled SIT Inverter for Solar Energy System ” , IEEE Transactions on Industrial Electronics, Vol. IE-34, No. 1, pp. 50-55, 1987.
[6] C. R. Sullivan, M. J. Powers,” A High-Efficiency Maximum Power Point Tracker for Photovoltaic Arrays in a Solar-Power Race Vehicle” , IEEE PESC’93, pp. 574-580, 1993.
[7] J.H.R.Enslin,” Maximum Power Point Tracking: A Cost Saving Necessity in Solar Energy Systems ” , Conference of IEEE IECON, vol.2, pp.1073 -1077, 1990.
[8] M. Matsui, T. Kitano, De-hong Xu and Zhong-qing Yang,” A New Maximum Photovoltaic Power Tracking Control Scheme Based on Power Equilibrium at DC Link ” , Proceedings of Industry Applications Conference, vol. 2, pp. 804 -809, 1999.
[9] J. Gow, and C. D. Manning,” Controller Arrangement for Boost Converter Systems Sourced from Solar Photovoltaic Arrays or Other Maximum Power Sources ” , IEE Proceedings-Electric Power Applications, vol. 147, pp.15-20, 2000.
[10] M. El-Shibini, A. Rakha and H. H.,” Maximum Power Point Tracking Technique ” , Proceedings of MELECON '89, pp. 21-24, 1989.
[11] V. Salas, E. Olías, A. Barrado and A. Lázaro “Review of the maximum power point tracking algorithms for stand-alone photovoltaic systems ” , REVIEW ARTICLE Solar Energy Materials and Solar Cells, Volume 90, Issue 11, pp. 1555-1578, 2006.
[12] S. Singer and A. Braunstein , “Maximum Power Transfer from a Nonlinear Energy Source to an Arbitrary Load ” , IEE Proceedings of Generation Transmission & Distribution, Vol. 134, No. 4, pp. 281-287, 1987.
[13] V. Salas, E. Olias, A. La’zaro, A. Barrado, “New algorithm using only one variable measurement applied to a maximum power point tracker” , Solar Energy Mater. Solar Cells 1–4, pp. 675–684, 2005.
[14] V. Salas, E. Olias, A. La’ zaro, A. Barrado, “Evaluation of a new maximum power point tracker (MPPT) applied to the photovoltaic stand-alone systems ” , Solar Energy Mater. Solar Cells 87 (1–4), pp. 807–815, 2005.
[15] J.C.H. Phang, D.S.H. Chan, J.R. Phillips, “Accurate analytical method for the extraction of solar cell ” , Electron. Lett. 20 (10), pp. 406–408, 1984.
[16] 張庭維,應用FPGA晶片及PWM實現MPPT太陽能發電系統之設計與研製,國立成功大學系統所碩士論文,2006年。
[17] Richard L. Burden, J. Douglas Faires , Numerical Analysis , 5th Edition, 1993.
[18] 林易賢,整合最大功率追蹤技術之太陽能船推進與與監控系統開發研究,國立成功大學系統所碩士論文,2007年。
[19] 白富升,以鋰電池儲能為基礎之自主性太陽能動力船電氣系統研製(II),國科會計畫,2007年。
[20] 吳財福、陳裕愷、張健軒,太陽能電能供電與照明系統綜論,全華科技圖書股份有限公司,pp. 2-6 - 2-9,2007年。
[21] 莊嘉琛,太陽能工程—太陽能電池篇,全華科技圖書公司,pp. 2-5 - 2-21,2008年。
[22] V. Salas, E. Olías, A. Barrado and A. Lázaro “Review of the maximum power point tracking algorithms for stand-alone photovoltaic systems”, REVIEW ARTICLE Solar Energy Materials and Solar Cells, Volume 90, Issue 11, pp. 1555-1578, 2006.
[23] Walt Kester, Joe Buxton, Battery Charger, “Power and Thermal Management Design Techniques ” , Analog Devices.
[24] 吳財福等EPARC研究團隊,電力電子學綜論,全華圖書股份有限公司,2008年。
[25] 梁適安,交換式電源供給器之理論與實務設計,全華科技圖書公司,pp. 12-16, 2004年。
[26] E. Koutroulis, K. Kalaitzakis, and N. C. Voulgaris “Development of a Microcontroller-Based Photovoltaic Maximum Power Point Tracking Control System”, IEEE Transactions on Power Electronics, Vol. 16, No. 1,pp. 46-54, Jan. 2001.
[27] E. Koutroulis, K. Kalaitzakis, “Novel battery charging regulation system for photovoltaic applications” Electric Power Applications”, IEE Proceedings Volume 151, Issue 2, Mar 2004 Page(s):191 – 197