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  • 學位論文

數位化馬達轉速控制應用於電焊機之送絲機構

Digital Motor Speed Control Applied to Wire Feeder of Welding Machine

指導教授 : 劉寅春

摘要


近幾年來,由於電力電子、數位訊號處理(DSP)等控制技術與近代 控制理論的快速發展,數位化馬達驅動已成為現代伺服技術發展的主 流。具有高速運算能力的數位訊號處理控制平台(DSP),以廣泛應用於 各種影像處理、語音處理、數位通訊以及伺服系統。本篇論文題出了數 位化馬達控制應用於電焊機之送絲機構,主要使用美國德州儀器公司所 開發之定點式DSP 晶片TMS320F2808 結合馬唯科技所開發之DSP 控制板作為數位化馬達控制的主要控制平台,在此平台上完成馬達轉速回授、PWM 生成以及設計控制轉速之PID 控制器。使用此方法之優點在於過去馬達轉速控制主要利用電壓對應轉速之查表方式來得知目前轉速,因此當負載改變時,也就是焊材之不同、焊槍管路之蜷曲,輸出之電流也會跟著改變,導致轉速出現誤差,因此本論文將馬達轉速控制數位化,利用馬達本身之編碼器,回授當下馬達轉速,成功克服此一問題。

並列摘要


In recent years, with the rapid development of control technologies such as power electronics, digital signal processing (DSP) and modern control theories, digital motor drive has become the mainstream of modern servo technology. Digital signal processing control platform (DSP) with high-speed computing capability is widely used in various image processing, speech processing, digital communications and servo system. This paper questions the digital motor control is applied to welding wire feeding mechanism,the main use American Texas instruments TMS320F2808 fixed-point type DSP chip development by combining Ma Wei technology development of DSP control board as the main control platform of digital motor control, in this platform for motor speed feedback, PWM generation and control the speed of PID controller is designed. The advantages of using this method is in the motor speed control in the past was mainly done using voltage corresponding to the rotating speed of the look-up table method to know the current speed, therefore, when the load changes, that is, different welding materials, welding torch pipe curled up, the current will also follow the change of output and lead to error of speed, so this paper will motor speed control digital, using the encoder of the motor itself, feedback the motor speed, successfully overcome the problem.

參考文獻


[1] D. S. Spirov and N. G. Komitov, “Dsp based induction motor drive with parallel quasi-resonant converter,” in 2016 XXV International Scientific Conference Electronics (ET), Sept 2016, pp. 1–4.
[2] H. Wang, S. Wang, W. Zhang, L. Xie, X. Yang, L. Vladareanu, and R. Munteanu, “Fuzzy controller design of the wire feeder of invasive vascular interventional
surgery robot,” in 2015 International Conference on Advanced Mechatronic Systems (ICAMechS), Aug 2015, pp. 30–35.
[3] F. J. Lin, P. H. Chou, C. S. Chen, and Y. S. Lin, “Dsp-based cross-coupled synchronous control for dual linear motors via intelligent complementary sliding mode
control,” IEEE Transactions on Industrial Electronics, vol. 59, no. 2, pp. 1061–1073, Feb 2012.

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