The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective

碩士 === 國立臺灣科技大學 === 電機工程系 === 100 === Magnetostrictive effect which the magnetostrictive metal will be induced under different magnetic field change and will produce the corresponding strain deformation to propagating an elastic wave, which can be identified the occurrence of magnetic field change...

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Main Authors: TENG-CHIN YU, 游騰進
Other Authors: Chung-Ming Young
Format: Others
Language:en_US
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/73019346661375703048
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spelling ndltd-TW-100NTUS54421252015-10-13T21:17:26Z http://ndltd.ncl.edu.tw/handle/73019346661375703048 The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective 磁致效應的高響應速及超低溫度係數傳感裝置之研究 TENG-CHIN YU 游騰進 碩士 國立臺灣科技大學 電機工程系 100 Magnetostrictive effect which the magnetostrictive metal will be induced under different magnetic field change and will produce the corresponding strain deformation to propagating an elastic wave, which can be identified the occurrence of magnetic field change at location information. Because the advantages of accuracy and reliability making this sensing devices more and more common used in a variety of automation processes and mechanical control components; for example of the position sensing deviceson motion control or liquid level monitoring requires high accuracy and fast response speed. Usually, the sensing device is dramatically variation by material properties, mechanism design configuration and need be special carefully design; also the most challenge is on how to reduce the temperature coefficient under certain wide operation conditions, to get a consistent accuracy independent of ambient or process temperature change. This research studied diversity of materials and driving characteristics for magnetostrictive sensor and constructed a high-precision positioning platform to analyze all these concerns above, discuss the dependence on wave propagation strength, speed response, reflection and damping by mechanical configuration, signal enhancement and filtering scheme and other features. Chung-Ming Young 楊宗銘 2012 學位論文 ; thesis 71 en_US
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language en_US
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description 碩士 === 國立臺灣科技大學 === 電機工程系 === 100 === Magnetostrictive effect which the magnetostrictive metal will be induced under different magnetic field change and will produce the corresponding strain deformation to propagating an elastic wave, which can be identified the occurrence of magnetic field change at location information. Because the advantages of accuracy and reliability making this sensing devices more and more common used in a variety of automation processes and mechanical control components; for example of the position sensing deviceson motion control or liquid level monitoring requires high accuracy and fast response speed. Usually, the sensing device is dramatically variation by material properties, mechanism design configuration and need be special carefully design; also the most challenge is on how to reduce the temperature coefficient under certain wide operation conditions, to get a consistent accuracy independent of ambient or process temperature change. This research studied diversity of materials and driving characteristics for magnetostrictive sensor and constructed a high-precision positioning platform to analyze all these concerns above, discuss the dependence on wave propagation strength, speed response, reflection and damping by mechanical configuration, signal enhancement and filtering scheme and other features.
author2 Chung-Ming Young
author_facet Chung-Ming Young
TENG-CHIN YU
游騰進
author TENG-CHIN YU
游騰進
spellingShingle TENG-CHIN YU
游騰進
The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
author_sort TENG-CHIN YU
title The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
title_short The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
title_full The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
title_fullStr The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
title_full_unstemmed The Position Feedback Device with High Response Speed and Low Temperature Coefficient Based on Magnetostrictive Effective
title_sort position feedback device with high response speed and low temperature coefficient based on magnetostrictive effective
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/73019346661375703048
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