Research On Linear Vibration Generation Via Positive Feedback

碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 99 === This thesis studies how to use a voice coil motor to excite a flexible structure at its natural frequency, which is uncertain in advance. The method is via feedback of the acceleration signals so that the system becomes marginally stable. A band-pass filter a...

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Main Authors: Chun-Lin Chen, 陳俊霖
Other Authors: Shang-Teh Wu
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/73423495347592856424
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spelling ndltd-TW-099YUNT54890112016-04-08T04:21:50Z http://ndltd.ncl.edu.tw/handle/73423495347592856424 Research On Linear Vibration Generation Via Positive Feedback 以正回授控制之線性振動產生器之研究 Chun-Lin Chen 陳俊霖 碩士 國立雲林科技大學 機械工程系碩士班 99 This thesis studies how to use a voice coil motor to excite a flexible structure at its natural frequency, which is uncertain in advance. The method is via feedback of the acceleration signals so that the system becomes marginally stable. A band-pass filter and a phase detection algorithm will be used to automatically track the natural frequency. This research can be divided into two parts: analysis and simulation of the dynamic system, and experimental platform building and real-time testing. The mathematical model of the system is first established and the performance of the control system is examined by numerical simulations. An experimental device consisting of three springs, two masses, and a voice coil motor is then constructed. Besides the control circuits, a visual man-machine interface is also devised to collect the data for time-domain and frequency-domain analysis. Experimental results confirm the effectiveness of the positive feedback vibration generator. Shang-Teh Wu 吳尚德 2011 學位論文 ; thesis 72 zh-TW
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language zh-TW
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description 碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 99 === This thesis studies how to use a voice coil motor to excite a flexible structure at its natural frequency, which is uncertain in advance. The method is via feedback of the acceleration signals so that the system becomes marginally stable. A band-pass filter and a phase detection algorithm will be used to automatically track the natural frequency. This research can be divided into two parts: analysis and simulation of the dynamic system, and experimental platform building and real-time testing. The mathematical model of the system is first established and the performance of the control system is examined by numerical simulations. An experimental device consisting of three springs, two masses, and a voice coil motor is then constructed. Besides the control circuits, a visual man-machine interface is also devised to collect the data for time-domain and frequency-domain analysis. Experimental results confirm the effectiveness of the positive feedback vibration generator.
author2 Shang-Teh Wu
author_facet Shang-Teh Wu
Chun-Lin Chen
陳俊霖
author Chun-Lin Chen
陳俊霖
spellingShingle Chun-Lin Chen
陳俊霖
Research On Linear Vibration Generation Via Positive Feedback
author_sort Chun-Lin Chen
title Research On Linear Vibration Generation Via Positive Feedback
title_short Research On Linear Vibration Generation Via Positive Feedback
title_full Research On Linear Vibration Generation Via Positive Feedback
title_fullStr Research On Linear Vibration Generation Via Positive Feedback
title_full_unstemmed Research On Linear Vibration Generation Via Positive Feedback
title_sort research on linear vibration generation via positive feedback
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/73423495347592856424
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