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研究生:侯旭琦
研究生(外文):Xu-Qi Hou
論文名稱:三階相移式零電壓切換電源轉換器之研製
論文名稱(外文):Implementation of a Three-Level Phase-Shifted Zero-Voltage-Switching Power Converter
指導教授:梁從主林瑞禮
指導教授(外文):Tsorng-Juu LiangRay-Lee Lin
學位類別:碩士
校院名稱:國立成功大學
系所名稱:電機工程學系碩博士班
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:2006
畢業學年度:94
語文別:中文
論文頁數:68
中文關鍵詞:相移式三階
外文關鍵詞:three-levelphase-shift
相關次數:
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本論文旨在研製一「三階相移式零電壓切換電源轉換器」,此轉換器使用的功率開關耐壓為輸入電壓之一半,而且採用相移控制技術,可達成功率開關之零電壓切換,大幅降低轉換器切換損失。本文首先說明轉換器之動作原理,並分析穩態特性,同時也提出轉換器元件設計之流程。最後,本文完成一具零電壓切換特性之相移式電源轉換器,其輸入電壓為400V,輸出為48V/20A,實測結果顯示,轉換器的滿載效率為86.4%,當輸出為13A 時,最佳效率可達90.0%。
In this thesis, a three-level phase-shifted zero-voltage-switching power converter is studied and implemented. The voltage across the switches is half of the input voltage. Thus, the problem of choosing switches at high power applications is improved. The converter uses the well-known phase-shift control to achieve zero voltage switching (ZVS), and it reduces the switching loss. The detailed operational principle and analysis of the three-level phase-shifted zero-voltage switching power converter are described in this thesis. In addition, the process of designing components in this converter is discussed. Finally, this thesis performs a three-level phase-shifted zero-voltage-switching power converter with 400VDC input voltage and 48VDC/20A output. The experimental results show that the efficiency of the converter is 86.4% at the full-load condition and the maximum efficiency is 90.0%.
中文摘要 Ⅰ
英文摘要 Ⅱ
誌 謝 Ⅲ
目 錄 Ⅳ
表目錄 Ⅵ
圖目錄 Ⅶ

第一章 緒論
1.1 研究動機 1
1.2 研究目的 3
1.3 論文架構簡介 3

第二章 相移式轉換器
2.1 前言 5
2.2 全橋相移式轉換器 5
2.3 三階零電壓切換轉換器 9
2.4 三階相移控制簡介 13

第三章 三階相移式零電壓切換轉換器
3.1 前言 16
3.2 主電路架構 16
3.3 電路動作原理 18
3.4 電路分析 29
3.4.1 責任週期損失 29
3.4.2 電壓轉換比 30

第四章 電路元件參數設計
4.1 電路規格 31
4.2 元件參數設計 32
4.2.1 主電路參數設計 32
4.2.2 控制電路參數設計 46

第五章 硬體製作與實驗結果
5.1 硬體製作 50
5.2 實驗結果 51

第六章 結論與未來研究方向
6.1 結論 64
6.2 未來研究方向 64

參考文獻 66
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[2] N. Mohen, T. M. Undeland, and W. P. Robbins, Power Electronics:Converters, Applications and Design, Second Edition, John Wiley & Sons, 1995.

[3] A. I. Pressman, Switching Power Supply Design, Second Edition, McGraw-Hill, 1998.

[4] J. A. Sabate, V. Vlatkovic, R. B. Ridley, F. C. Lee, and B. H. Cho, “Design considerations for high-voltage high-power full-bridge zero-voltage-switched PWM converter,” IEEE APEC’1990, pp.275-284.

[5] D. B. Dalal and F. S. Tsai, “A 48V, 1.5kW, front-end zero-voltage-switched, PWM converter with lossless active snubbers for output rectifiers,”IEEE APEC’1993, pp. 722-728.

[6] G. Hua, F. C. Lee, and M. M. Jovanovic, “An improved zero-voltage-switched PWM converter using a saturable inductor,” IEEE Trans. on Power Electronics, Vol. 8, No. 4, pp. 530-534, October 1993.

[7] B. Andreycak, “Design review: 500 watt, 40W/in3 phase shifted ZVT power converter,” Unitrode Power Supply Design Seminar, 1993.

[8] B. Andreycak, “Designing a phase shifted ZVT power converter,” Unitrode Power Supply Design Seminar Manual SEM-900, 1993.

[9] B. Andreycak, “Phase shifted, zero voltage transition design considerations and the UC3875 PWM controller,” Unitrode Power Supply design Seminar , 1997.

[10] K. Dierberger, “A new generation of power mosfets offers improved performance at reduced cost,” Advanced Power Technology, Inc.

[11] 阮新波, 嚴仰光,“脈寬調製DC/DC全橋變換器的軟開關技術”, 科學出版社.

[12] 林宋宜,“全橋柔性切換轉換器之研製”, 國立台灣大學博士論文, 中華民國87 年.

[13] 胡宏慶,“全橋相移式零電壓切換功率轉換器之研製”, 國立成功大學碩士論文, 中華民國89 年.

[14] X. Ruan, and Y. Yan, “An improved phase-shifted zero-voltage and zero-current switching PWM converter,” IEEE APEC’1998, pp.811-815.

[15] M. Miller and A. Buffin, “A versatile 48V/60V 100A rectifier for all mains inputs,” IEEE INTELEC’1995, pp. 466-470.

[16] N. H. Kutkut, G. Luckjiff, and D. M. Divan, “A dual bridge high current dc-to-dc converter with soft switching capability,” IEEE IAS’1997, pp. 1398-1405.

[17] J. R. Pinheiro and I. Barbi, “The three-level ZVS PWM converter: a new concept in high-voltage dc-to-dc conversion,” IEEE IECON’1992, pp. 173-178.

[18] J. R. Pinheiro and I. Barbi, “Wide load range three-level ZVS-PWM dc-to-dc converter,” IEEE PESC’1993, pp. 171-177.

[19] I. Barbi, R. Gules, R. Redl, and N. O. Sokal, “DC/DC converter for high input voltage: four switches with peak voltage of vin/2, capacitive turn-off snubbing, and zero-voltage turn-on,” IEEE PESC’1998, pp. 1-7.

[20] F. Canales, P. Barbosa, J. Burdio, and F. C. Lee, “A zero voltage switching three-level dc/dc converter,” IEEE INTELEC’2000, pp. 512-517.

[21] B. M. Song, R. McDowell, A. Bushnell, and J. Ennis, “A three-level dc-dc converter with wide-input voltage operations for ship-electric-power-distribution systems,” IEEE Trans. on Plasma Science, 2004, pp. 1856-1863.

[22] Texas Instruments, Inc., “Phase shift resonant controller UC3875/6/7/8,”1999.

[23] Texas Instruments, Inc., “BiCMOS advanced phase shift PWM controller UCC3895,” 2001.

[24] Texas Instruments, Inc., “UCC3895 phase shift PWM controller EVM kit setup and usage,” Power Supply Control Products.

[25] 王信雄,“切換式電源的磁性元件:原理、設計與應用”國立清華大學先進電源科技中心訓練課程, 2004 年.
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