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研究生:陳卿輝
研究生(外文):Ching-Hui Chen
論文名稱:軸向磁路式同步發電機之電樞反應分析與研究
論文名稱(外文):Analysis and Design on the Armature Reaction of Axial Magnetic-Circuit Synchronous Generators
指導教授:王培仁
指導教授(外文):Pei-Jen Wang
學位類別:碩士
校院名稱:國立清華大學
系所名稱:動力機械工程學系
學門:工程學門
學類:機械工程學類
論文種類:學術論文
論文出版年:2000
畢業學年度:88
語文別:中文
論文頁數:75
中文關鍵詞:軸向磁路發電機電樞反應
外文關鍵詞:Axial magnetic fiuxsynchronous generatorarmature reaction
相關次數:
  • 被引用被引用:1
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  • 下載下載:0
  • 收藏至我的研究室書目清單書目收藏:2
本文研究的目的,在於探討可抗電樞反應之軸向磁路式同步發電機,先分析選定各種可能抗電樞反應的方案,進而對各種方案作細部分析,同時並達成發電機尺寸最佳化設計,最後選擇一種符合本研究性能之同步發電機;本文之主要研究方法為使用商業套裝模擬軟體進行磁路之模擬與分析,由於影響發電機輸出電壓的參數過多,但主要為發電機的尺寸與發電機本身材料的特性,我們也針對此兩要件作最佳化模擬分析,然後還需考慮發電機是否可抗電樞反應,故也對篩選出的方案作負載特性分析,最後選出符合本發電機性能之方案。

The objective of this study is to investigate synchronous generators with axial magnetic circuit that resists armature reactions. First, possible methods for resisting armature reactions are analyzed and determined. The details of all the possible methods are further analyzed with optimal designs on the dimensions of the generators simultaneously. Finally, the selection is made for the design that meets the requirements in this study. The principal approach to the problem is the employment of the commercial magnetic circuit analysis and simulation package. Due to the various parameters that influencing the output voltage of the generators, main efforts have been emphasized on the dimensions and materials characteristics for optimal simulations. In addition, the ability of resisting armature reactions has been considered with load analysis cases for satisfying the performance requirements of the generators.

第一章 簡介
1-1 研究背景
1-2 文獻回顧
1-3 問題描述與研究目的
第二章 同步發電機系統簡介
2-1 發電機的基本原理
2-2 發電機之電樞反應
2-3 發電機之激磁場影響
第三章 模擬軟體與模擬分析流程
3-1 有限元素法分析軟體簡介
3-2 有限元素法之基礎理論
3-3 模擬分析流程
第四章 模擬過程與結果
4-1 初步模擬過程與結果
4-2 發電機各部分元件尺寸與材料變化模擬結果
4-3 發電機磁石工作點之討論
第五章 實驗結果分析與後續可行方案
5-1 實驗結果與分析
5-2 可行方案模擬結果
5-3 可行方案分析與討論
第六章 結論

1. I. L. Kosow, (1972)''Electric Machinery and transformers,'' second Edition, Prentice-Hall International Editions.
2. C. T. Liu, J. L. Kuo and G. S. Wu, (1993)''A Generalized 3-D Dynamic Modelling for Transverse Flux Homopolar Linear Machines Based on Statistical Saliency-Effect Superposition Method," IEEE transactions on Energy Conversion, Vol. 8, No. 4, December pp.739-749.
3. S. Nonaka and K. Kesamaru, (1989)''Analysis of Voltage-Adjustable Brushless Synchronous Generator Without Exciter,'' IEEE transactions on Industry Applications, Vol. 25, No.1, Jan.-Feb. pp126-132.
4. F. Shibata and T. Kohrin, (1983)''A Brushless, Self-Excited Polyphase Synchronous Generator,'' IEEE transactions on Power Apparatus and System, Vol. PAS-102, No. 8, August pp.33-35.
5.J. Matsuki, T. Okada and M. Yamanaka, (1995)''Monitoring of Magnetic Saturation Level of A Synchronous Generator Under Load,'' IEEE transactions on Energy Conversion, Vol. 10, No. 2, June pp225-231.
6.X. Y. Li and O. P. Malik, (1994)''Performance of A Double-Star Synchronous Genreator with Bridge Rectified Output,'' IEEE transactions on Energy Conversion, Vol. 9, No. 3, September pp613-619.
7.L. R. R. Montero, (1997)''Armature Reaction Effect in Synchronous Machine Stability,'' Electric Machines and Drives Conference Record, IEEE International, ppTC1/8.1 -TC1/8.3
8.M. Cistelecan and E. Demeter, (1998)''Permanent Magnet Synchronous Machines Analysis Taking into Account The Iron Saturation,'' Mediterranean Electrotechnical Conference, Vol. 2, pp1145-1147.
9.N. Naoe, (1995)''Fundamental Characteristics of Voltage Compensation Type Permanent-Magnet Generator,'' Energy Management and Power Delivery, Proceedings of EMPD, International Conference on Vol 2, pp624-627
10.N. Naoe, (1997)''Voltage Compensation of Permanent-Magnet Generator with Capacitors,'' Electric Machines and Drives Conference Record, IEEE International, ppWB2/14.1-WB2/14.3
11.張生傳"軸向磁路式同步發電機之分析與研究",清華大學動機系碩士論文,1999
12. 楊宗銘 電機機械 全華科技圖書股份有限公司,1986

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