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研究生:劉偉霖
研究生(外文):Wei-LinLiu
論文名稱:新型單相多階層換流器之研製
論文名稱(外文):Design and Implementation of a Novel Single-Phase Multi-Level Inverter
指導教授:陳建富陳建富引用關係
指導教授(外文):Jiann-Fuh Chen
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:2012
畢業學年度:100
語文別:中文
論文頁數:67
中文關鍵詞:多階層換流器數位訊號處理器
外文關鍵詞:Multi-levelinverterdigital signal processor
相關次數:
  • 被引用被引用:2
  • 點閱點閱:179
  • 評分評分:
  • 下載下載:18
  • 收藏至我的研究室書目清單書目收藏:1
本文提出一新型單相多階層換流器之電路架構,以兩個二極體與六個功率開關之組合來實現五階層輸出之架構,本電路架構使用較少的功率開關及二極體之元件數目來達到多階層輸出之目的,進而獲得低諧波失真之輸出與降低成本之開銷並擁有高功率密度之特點及縮小電路整體體積之大小,於章節中將深入探討與剖析控制法則及模式分析,而本文採用數位訊號處理器(TMS320LF2407A)為控制之核心並提出其延伸電路之架構,最後,實際完成一組1 kW數位控制之新型單相多階層換流器雛型,以實測之結果證明本文所提理論之正確性及電路實作之可行性。
In this thesis, a novel single-phase multi-level inverter topology is proposed. By using four additional power components, the proposed topology which is composed of six power switches and two diodes can achieve multi-level output. The new topology produces a significant reduction in the number of power switching devices and diode components to implement a multi-level output. In this way, the low harmonic distortion is achieved and the total cost of the circuit can be reduced. With less components, higher power density and small volume of circuit can be realized. The detail of mode analysis and the control method are introduced. The control scheme is presented by DSP(Digital Signal Processor)and the extended topology is proposed. Finally, a 1 kW novel single-phase multi-level inverter is implemented to verify the theoretical analysis and the performance.
目 錄
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 01
1.1 研究背景與動機 01
1.2 研究目的與內容 02
1.3 論文之大綱 03
第二章 多階層換流器架構之介紹與剖析 05
2.1 前言 05
2.2 多階層換流器常見之架構 07
2.2.1 二極體箝位式多階層換流器 07
2.2.2 飛輪電容式多階層換流器 10
2.2.3 串接式多階層換流器 14
2.2.4 簡易型多階層換流器 15
2.2.5 各式多階層換流器之比較 18
第三章 新型單相數位控制之多階層換流器 19
3.1 前言 19
3.2 換流器輸入來源之分類 19
3.3 新型多階層換流器之調變控制技術 20
3.3.1 正弦脈波寬度調變技術 20
3.3.2 相位分段配置脈波寬度調變切換技術 22
3.4 新型多階層換流器電路架構之設計與剖析 25
3.4.1 多階層換流器電路架構之設計要點與準則 25
3.4.2 多階層換流器電路架構之剖析與探討 28
第四章 模擬與實驗結果 53
4.1 前言 53
4.2 模擬結果 55
4.3 實驗結果 57
第五章 結論與未來展望 63
5.1 結論 63
5.2 未來展望 64
參 考 文 獻 65

參考文獻
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