Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization
Copyright © 2017 ASME. Fractional derivative system has gained its popularity in modeling and control because of its long memory property. Only recently, residual vibration suppression for the fractional derivative oscillatory system using input shaping has been studied. Input shaping suppresses res...
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th-mahidol.426122019-03-14T15:03:38Z Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization Withit Chatlatanagulchai Poom Jatunitanon Sirichai Nithi-uthai Kasetsart University Mahidol University Thailand National Electronics and Computer Technology Center Engineering Copyright © 2017 ASME. Fractional derivative system has gained its popularity in modeling and control because of its long memory property. Only recently, residual vibration suppression for the fractional derivative oscillatory system using input shaping has been studied. Input shaping suppresses residual vibration by using destructive interference of impulse responses. So far, only a few types of input shapers have been proposed for the fractional derivative oscillatory system, using only analytical, closed-form solutions. In this paper, input shaper syntheses for explicit fractional derivative systems using nonlinear optimization have been proposed. This work designs input shapers that have never been used with the fractional derivative system before, which include fixed-interval input shaper and specified-insensitivity input shaper, and extends the type that has already been used to a more general, improved input shaper. 2018-12-21T07:42:27Z 2019-03-14T08:03:38Z 2018-12-21T07:42:27Z 2019-03-14T08:03:38Z 2017-01-01 Conference Paper ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE). Vol.4B-2017, (2017) 10.1115/IMECE2017-71364 2-s2.0-85041030287 https://repository.li.mahidol.ac.th/handle/123456789/42612 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85041030287&origin=inward |
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Engineering Withit Chatlatanagulchai Poom Jatunitanon Sirichai Nithi-uthai Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
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Copyright © 2017 ASME. Fractional derivative system has gained its popularity in modeling and control because of its long memory property. Only recently, residual vibration suppression for the fractional derivative oscillatory system using input shaping has been studied. Input shaping suppresses residual vibration by using destructive interference of impulse responses. So far, only a few types of input shapers have been proposed for the fractional derivative oscillatory system, using only analytical, closed-form solutions. In this paper, input shaper syntheses for explicit fractional derivative systems using nonlinear optimization have been proposed. This work designs input shapers that have never been used with the fractional derivative system before, which include fixed-interval input shaper and specified-insensitivity input shaper, and extends the type that has already been used to a more general, improved input shaper. |
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Kasetsart University |
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Kasetsart University Withit Chatlatanagulchai Poom Jatunitanon Sirichai Nithi-uthai |
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Conference or Workshop Item |
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Withit Chatlatanagulchai Poom Jatunitanon Sirichai Nithi-uthai |
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Withit Chatlatanagulchai |
title |
Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
title_short |
Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
title_full |
Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
title_fullStr |
Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
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Input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
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input shaper syntheses for explicit fractional derivative systems using nonlinear optimization |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/42612 |
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