研究生: |
施易廷 Shih, Yi-Ting |
---|---|
論文名稱: |
應用於線性量測系統之基於鎖相迴路架構之訊號修正法優化 Optimization of Phase-Locked-Loop Based Signal Correction Method Applied on Linear Positioning System |
指導教授: |
張禎元
Chang, Jen-Yuan |
口試委員: |
宋震國
Sung, Cheng-Kuo 曹哲之 Tsao, Che-Chih 徐志豪 Xu, Zhi-Hao |
學位類別: |
碩士 Master |
系所名稱: |
工學院 - 動力機械工程學系 Department of Power Mechanical Engineering |
論文出版年: | 2019 |
畢業學年度: | 107 |
語文別: | 中文 |
論文頁數: | 95 |
中文關鍵詞: | 線性位置量測系統 、訊號處理 |
外文關鍵詞: | notch filter |
相關次數: | 點閱:2 下載:0 |
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隨著工具機產業對於高精度、低成本的產品需求迅速提升,國內在開發具提升整機精度之低成本、高值化位置回授系統之技術仍處落後地位。硬體製造面而言,國內已有相當水準開發出穩定場強、公差極小的磁性量測系統,與國外商品比較,硬體規格已相當;惟後端處理的部分,無法提升位置解析度、精度及因應可能較差的量測環境的能力,無法大幅提升本國與國外產品的競爭力。
本研究目標在於開發應用於磁性量測系統之訊號處理系統,針對應用於位置細分割前的正交訊號修正,提出鎖相迴路為基本架構之數位濾波方法,並針對每個環節進行頻域響應分析以及輸出訊號的頻譜分析。為避免直接以即時系統進行訊號處理開發可能無法分離運算中可能帶來無法辨識之誤差,前端研究先以Simulink環境進行訊號處理系統之暫態分析模擬,以離線處理的方式調整架構內可設定之參數,並觀察各參數對於整體架構之動態變化。得到各參數之設定關係後,並將此開發系統架構移植至FPGA晶片並進行性能、即時性驗證,並與各廠牌之磁性量測系統規格比較。
This research focuses on the development of real-time signal correction method applied on quadrature-signal systems such as magnetic and optical encoders. Without correction, the measured signals are not perfect sinusoidal, due to existing DC offsets, amplitude deviation, phase-shifts and waveform distortions, leading to inaccurate interpolation for position. In order to eliminate those noise, one needs to calibrate and filter out the signals. Through Fast Fourier Transform (FFT), the spectrum of the signals can be obtained. With the selection of the specific filter and the proposed method, the accuracy of positioning can be improved is proposed in this research.
To achieve the highest accuracy, this research proposes an approach of using notch filter based on lattice structure. The proposed notch filter is robust to the changing of parameters when compared with other digital filter implementation structures. Secondly, signal correction based on phase-lock-loop is investigated in this research to extract phases of a pair of input signals and to regenerate the corresponding signals, which can alleviate uncertainty in analyzing position. Finally, good noise rejection capability is validated through calibrated experiments, which suggests the effectiveness of the proposed method of this research.
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