Improved modal observer for modal SSDI-Max

The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The improvement is attained by adding a system to estimate the structure modal displacement. A model of smart structure shunted to resonant circuit is u...

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Published inMolecular Crystals and Liquid Crystals Vol. 628; no. 1; pp. 145 - 161
Main Authors Babesse, E., Belkhiat, S., Cherif, A., Meddad, M., Eddiai, A., Boughaleb, Y.
Format Journal Article
LanguageEnglish
Published Philadelphia Taylor & Francis 23.03.2016
Taylor & Francis Ltd
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Abstract The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The improvement is attained by adding a system to estimate the structure modal displacement. A model of smart structure shunted to resonant circuit is used and tested with Matlab TM environment and the performance of the new strategy based on Lenear Quadratic Guaussian and Neuro-Fuzzy observer are presented and compared with that one based on Proportional Integral Derivative observer. Results shows the new technique effectiveness when conventional one reaches its limits in the wide bande frequency case.
AbstractList The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The improvement is attained by adding a system to estimate the structure modal displacement. A model of smart structure shunted to resonant circuit is used and tested with Matlab super(TM) environment and the performance of the new strategy based on Lenear Quadratic Guaussian and Neuro-Fuzzy observer are presented and compared with that one based on Proportional Integral Derivative observer. Results shows the new technique effectiveness when conventional one reaches its limits in the wide bande frequency case.
The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The improvement is attained by adding a system to estimate the structure modal displacement. A model of smart structure shunted to resonant circuit is used and tested with Matlab TM environment and the performance of the new strategy based on Lenear Quadratic Guaussian and Neuro-Fuzzy observer are presented and compared with that one based on Proportional Integral Derivative observer. Results shows the new technique effectiveness when conventional one reaches its limits in the wide bande frequency case.
The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The improvement is attained by adding a system to estimate the structure modal displacement. A model of smart structure shunted to resonant circuit is used and tested with MatlabTM environment and the performance of the new strategy based on Lenear Quadratic Guaussian and Neuro-Fuzzy observer are presented and compared with that one based on Proportional Integral Derivative observer. Results shows the new technique effectiveness when conventional one reaches its limits in the wide bande frequency case.
Author Babesse, E.
Cherif, A.
Eddiai, A.
Boughaleb, Y.
Belkhiat, S.
Meddad, M.
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Snippet The objective of this paper is to improve a semi-active control of structural vibrations, which is Synchronised Switch Damping on Inductor Maximum. The...
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SubjectTerms Circuits
Crystals
Damping
Fuzzy logic
Modal observer
Modal strategy
Molecular chemistry
Piezoelectric transducer
Proportional integral derivative
Semi-passive technique
Smart structures
Strategy
Switches
Vibration damping
Title Improved modal observer for modal SSDI-Max
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