Analysis and Verification for Magnetic Suspension Vibrator

碩士 === 國立彰化師範大學 === 電機工程學系 === 93 === The advantages of the proposed magnetic suspension vibrator are no friction, no contamination, low noise, rigid and un-flexible. In this thesis, a hybrid magnetic suspension vibrator is presented and implemented. The magnetic suspension vibrator is an unstable...

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Main Authors: An-Jan Jiang, 江安展
Other Authors: Chin E. Lin
Format: Others
Language:en_US
Published: 2005
Online Access:http://ndltd.ncl.edu.tw/handle/00639582678032279350
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spelling ndltd-TW-093NCUE54420142016-06-03T04:13:55Z http://ndltd.ncl.edu.tw/handle/00639582678032279350 Analysis and Verification for Magnetic Suspension Vibrator 磁浮避震器之分析與驗證 An-Jan Jiang 江安展 碩士 國立彰化師範大學 電機工程學系 93 The advantages of the proposed magnetic suspension vibrator are no friction, no contamination, low noise, rigid and un-flexible. In this thesis, a hybrid magnetic suspension vibrator is presented and implemented. The magnetic suspension vibrator is an unstable system, but by designing a PID controller and some electronic circuits and using a potential meter, the closed loop system will be stable. The experiments of the position control and the vibration suppressed are both verified. By designing the PID controller, the PWM circuit (duty cycle is 96%) and the full bridge driver circuit, the original periodic disturbance signals are (mm) and (mm) can be suppressed to (mm) and (mm). In the position control, the best performance for the supporter goes back to the equilibrium point is about 0.3 seconds (the worst performance is about 0.5 seconds). Two permanent magnets (PM1 and PM2) are also able to resist efficiently the external force 0.24(kg), (but not completely, like a mechanical spring we expected). The maximum external force is resisted for the hybrid magnetic suspension vibrator is about 0.82(kg). Chin E. Lin 林清一 2005 學位論文 ; thesis 74 en_US
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language en_US
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description 碩士 === 國立彰化師範大學 === 電機工程學系 === 93 === The advantages of the proposed magnetic suspension vibrator are no friction, no contamination, low noise, rigid and un-flexible. In this thesis, a hybrid magnetic suspension vibrator is presented and implemented. The magnetic suspension vibrator is an unstable system, but by designing a PID controller and some electronic circuits and using a potential meter, the closed loop system will be stable. The experiments of the position control and the vibration suppressed are both verified. By designing the PID controller, the PWM circuit (duty cycle is 96%) and the full bridge driver circuit, the original periodic disturbance signals are (mm) and (mm) can be suppressed to (mm) and (mm). In the position control, the best performance for the supporter goes back to the equilibrium point is about 0.3 seconds (the worst performance is about 0.5 seconds). Two permanent magnets (PM1 and PM2) are also able to resist efficiently the external force 0.24(kg), (but not completely, like a mechanical spring we expected). The maximum external force is resisted for the hybrid magnetic suspension vibrator is about 0.82(kg).
author2 Chin E. Lin
author_facet Chin E. Lin
An-Jan Jiang
江安展
author An-Jan Jiang
江安展
spellingShingle An-Jan Jiang
江安展
Analysis and Verification for Magnetic Suspension Vibrator
author_sort An-Jan Jiang
title Analysis and Verification for Magnetic Suspension Vibrator
title_short Analysis and Verification for Magnetic Suspension Vibrator
title_full Analysis and Verification for Magnetic Suspension Vibrator
title_fullStr Analysis and Verification for Magnetic Suspension Vibrator
title_full_unstemmed Analysis and Verification for Magnetic Suspension Vibrator
title_sort analysis and verification for magnetic suspension vibrator
publishDate 2005
url http://ndltd.ncl.edu.tw/handle/00639582678032279350
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