Abstract
向量控制(Vector Control)(或稱磁場導向控制(Field-Oriented Control)應用在
感應馬達控制上已有二十餘年,拜科技之賜,由於微算機處理能力增強,使得方法在馬達控
制上能符合工業要求的性能。但對研究人員而言,向量控制法應採用直接抑或間接架構? 轉
子或定子磁場導向? 不同的架構所衍生出來的研究方向各異,解決問題的方法也就自然不同
。本論文將逐一介紹各種設計技術,並予以模擬比較,提供研究人員參考,節省摸索時程,
以期後續實體可以驗證。
The method of Vector Control (or Field-Oriented Control) has been used in induction motors for more than 20 years. Recently, due to the improvement of microprocessors, the vector control techniques can be satisfied to the inustry requirements. However, the decision of the adopted model, direct or indirect, rotor resistance or stator resistance field-oriented, is still up to researchers. There will be different problems with the associated structures, and the design strategies will be also different. This paper will present several Vector Control techniques, and provide many simulation results. To researchers, this paper can be used as a tutorial guide, such that the developing period can be reduced.
The method of Vector Control (or Field-Oriented Control) has been used in induction motors for more than 20 years. Recently, due to the improvement of microprocessors, the vector control techniques can be satisfied to the inustry requirements. However, the decision of the adopted model, direct or indirect, rotor resistance or stator resistance field-oriented, is still up to researchers. There will be different problems with the associated structures, and the design strategies will be also different. This paper will present several Vector Control techniques, and provide many simulation results. To researchers, this paper can be used as a tutorial guide, such that the developing period can be reduced.
| Original language | Chinese (Traditional) |
|---|---|
| Pages (from-to) | 87-95 |
| Journal | 電力電子技術 |
| Issue number | 39 |
| State | Published - 1997 |
Cite this
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver