簡易檢索 / 詳目顯示

研究生: 楊詠迪
YUNG-TE YANG
論文名稱: 雙輸出串聯諧振轉換器研製
Study and Implementation of a Double-Output Series Resonant Converter
指導教授: 羅有綱
Yu-Kang Lo
口試委員: 劉益華
Yi-Hua Liu
歐勝源
Sheng-Yuan Ou
學位類別: 碩士
Master
系所名稱: 電資學院 - 電子工程系
Department of Electronic and Computer Engineering
論文出版年: 2007
畢業學年度: 95
語文別: 中文
論文頁數: 56
中文關鍵詞: 串聯諧振轉換器雙組輸出
外文關鍵詞: Series resonant converter, double-output converter
相關次數: 點閱:375下載:7
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報

本論文主要研製一台500W雙輸出轉換器,採用的架構為LLC形式串聯諧振轉換器。文中針對半橋諧振轉換器做電路分析,並使用MATLAB數學模擬軟體進行品質因數(Q)、K因子、特性阻抗(Zo)、變壓器圈數比(NP/NS)與一次測激磁電感(Lm)之響應模擬。串聯諧振轉換器在輕載雖然可以藉由提高切換頻率降低輸出增益,但如果考慮兩組輸出一輕一重的條件下,頻率變動勢必大受限制而影響輸出電壓調節率,所以本文採用雙諧振槽與雙變壓器的方式,分別設計各輸出變壓器的圈數比與諧振槽特性以滿足輸出電壓規格以外,本文亦藉由分析串並聯諧振特性,說明二次側繞組間之雜散電容及輸出整流二極體之接面電容對諧振轉換器的影響。
本論文提出一LLC設計流程,藉由設定諧振頻率及特性阻抗可計算出各元件之。最後,實作一部12V/35A、5V/15A之雙輸出LLC,並將實測結果與模擬和理論相互印證。


This thesis focuses on the study and implementation of a 500W double-output LLC-type half-bridge series resonant converter (SRC). The basic operating principles of an SRC are discussed in detail. The relationships among the voltage gain, quality factor (Q), K factor, characteristic impedance (Zo), turns ratio (n) and magnetizing inductance (Lm) have been analyzed and simulated with MATLAB. Generally, the output voltage for a single-output SRC at light loads can be regulated by increasing the switching frequency. However, the output voltage regulations for a two-output circuit with only one resonant tank and one transformer are almost impossible due to the cross-regulation effects, especially when one output is at the heaviest load and the other at the lightest load. Therefore, two resonant tanks and two transformer have been used for each output in the proposed topology. Each resonant component and transformer can be separately designed to satisfy the ouput specification. In this thesis, a LLC-type SRC are analyzed and implemented to explain the influences of secondary parasitic capacitances and the junction capacitances of output rectifier diodes on the resonant circuit.

摘 要 i Abstract ii 誌 謝 iii 目 錄 iv 符號索引 vi 圖表索引 viii 第一章 緒論 1 1.1 研究背景與動機 1 1.2 內文編排方式 2 第二章 串聯諧振轉換器原理 3 2.1 RLC串聯電路頻率響應分析 3 2.2 串聯諧振轉換器頻率響應分析 4 2.3 LLC串聯諧振轉換器頻率響應分析 6 2.3.1 Region-1之動作分析及數學模型 8 2.3.2 Region-2之動作分析與數學模型 16 第三章 輕載條件下電壓漂移現象之探討 23 3.1 串並聯諧振轉換器特性 23 3.2 雜散電容之影響 24 第四章 諧振槽之分析、模擬與設計 30 4.1 LLC串聯轉換器諧振槽分析 30 4.2 品質因數Q值及K因子對頻率響應的影響 31 4.3 特性阻抗Zo對頻率響應之影響 34 4.4 圈數比n對頻率響應的影響 35 4.5 LLC設計流程 36 4.5.1 制定規格 38 4.5.2 變壓器設計及製作 38 4.5.3 計算Lr、Lm及Cr之限制 39 4.5.4 選定Zo及計算Lr、Lm及Cr之值 40 4.6 雙輸出LLC設計範例 40 第五章 實驗結果 48 5.1 雙輸出電路實作規格 48 5.2 雙輸出電路實作結果與波形 50 第六章 結論 53 6.1 結論 53 6.2 未來研究方向 53 參考文獻 54

[1] F. C. Lee, “High-Frequency Quasi-Resonant and Multi-Resonant Converter Technologies,“ IEEE IECON, pp. 509-521, 1988.
[2] J. G. Cho, J. A. Sabate, and F. C. Lee, “Novel Full Bridge Zero-Voltage-Transition PWM DC/DC Converter for High Power Applications,” IEEE PESC, pp. 143-149, 1994.
[3] J. Feng, Y. Hu, W. Chen, and C. C. Wen, “ZVS Analysis of Asymmetrical Half-Bridge Converter,” IEEE PESC, vol. 1, pp. 243-247, 2001.
[4] J. W. Baek, J. G. Cho, D. W. Yoo, G.H. Rim, and H.G. Kim, “An Improved Zero Voltage and Zero Current Switching Full Bridge PWM Converter with Secondary Active Clamp”, IEEE PESC, pp. 948-954. 1998.
[5] C. M. Wang, “A New Family of Zero-Current-Switching (ZCS) PWM Converter,” IEEE Transactions on Industrial Electronics, Vol. 52, pp. 1117-1125, 2005.
[6] A. K. S. Bhat, “Analysis and Design of a Modified Series Resonant Converter,” IEEE Transactions on Power Electronics, pp. 423-430, 1993.
[7] J. P. Agrawal, K. siri, and C. Q. Lee, “Determination and Minimization of Cross Regulation in Multi-Output High Order SRC,” IEEE Circuits and Systems, Vol. 1, pp. 692-695. 1990.
[8] F. S. Tsai and F. C. Lee. “A Complete DC Characterization of a Constant-Frequency, Clamped-Mode, Series Resonant Converter,” IEEE PESC, pp. 987-996, 1988.
[9] M. K. Kazimierczuk and S. Wong, “Frequency-Domain Analysis of Series Resonant Converter for Continuous Conduction Mode,” IEEE Transactions on Power Electronics, Vol. 6, pp. 270-279, 1992.
[10] A. F. Hernandez, R. W. Erickson, S. Lofton, and P. Anderson, “A Large Signal Computer Model for the Series Resonant Converter,” IEEE PESC, pp. 737-744, 1991.
[11] M. K. Kazimierczuk and D. Czarkowski, “Resonant Power Converters,” Wiley-Interscience publication, ISBN 0-471-04706-6.
[12] S. C. Wong, A. D. Brown, Y. S. Lee, and S. W. Ng, “Parasitic Losses Modeling of a Series Resonant Converter Circuit,” IEEE Circuits and Systems, Vol. 1, pp. 921-924, 1997.
[13] Marian K. Kazimierczuk and Dariusz czarkowski, “Resonant Power Converters” 1995, John Wiley & Sons, Inc.
[14] R. Elferich and T. Duerbaum, “A New Load Resonant Dual Output Converter,” IEEE PESC, pp. 1319-1324, 2002.
[15] R. Liu and C. Q. Lee, “Analysis and Design of LLC-type Series Resonant Converter,” IEE Proc. Vol. 24, pp. 1517-1519, 1988.
[16] K. Siri and C. Q. Lee, “Constant Switching Frequency LLC-type Series Resonant Converter,” IEEE Circuits and Systems, Vol. 1, pp. 513-516, 1989.
[17] R. Liu, C. Q. Lee, and A. K. Upadhyay, “Experimental Study of the LLC-type Series Resonant Converter,“ IEEE APEC, pp. 31-37, 1990.
[18] A. K. S. Bhat, “Analysis and Design of LCL-type Series Resonant Converter,” IEEE Transactions on Industrial Electronics, Vol. 41, no. 1, pp. 118-124, 1994.
[19] B. Yang, F. C. Lee, A. J. Zhang, and G. S. Huang, “LLC Resonant Converter for Front End DC/DC Conversion,” IEEE APEC, pp. 1108-1112, 2002.
[20] B. Lu, W. Liu, Y. Liang, F. C. Lee, and J. D. Van Wyk, ”Optimal Design Methodology for LLC Resonant Converter,” IEEE APEC, pp. 533–538. 2006.
[21] L. Yan, L. Wenduo, L. Bing, and D. J. Wyk, “Design of Integrated Passive Component for a 1MHz 1KW Half-Bridge LLC Resonant Converter,” IEEE IAC, vol.3, pp. 2223-2228, 2005.
[22] R. Liu, L. Batarseh, and C. Q. Lee, “Comparison of Performance Characteristics between LLC-type and Conventional Parallel Resonant Converters,” Electronics Letters, Vol. 24, pp. 1510-1511, 1988.
[23] R. Cheng, Y. Yang, and Y. Jiang, ”Design of LLC Resonant Converter with Integrated Magnetic Technology,” IEEE ICEMS, vol. 2, pp. 1351-1355, 2005.
[24] B. Yang, “Topology Investigation for Front End DC/DC Power Conversion for Distributed Power,” Ph.D. dissertation, 2003.
[25] M. K. Kazimierczuk, N. Thirunarayan, and S. Wang, “Analysis of series-parallel resonant converter,” IEEE Trans. Aerospace and Electronics, vol. AES-29, pp. 88-99, Jan. 1993.
[26] Application Handbook, AN1673, STMicroelectronics, April, 2004.

無法下載圖示 全文公開日期 2012/07/04 (校內網路)
全文公開日期 本全文未授權公開 (校外網路)
全文公開日期 本全文未授權公開 (國家圖書館:臺灣博碩士論文系統)
QR CODE