Vibration Suppression Design of Adaptive Truss Structures by Simulated Annealing

This paper proposes vibration suppression design for adaptive truss structures which deform to achieve given tasks. The cross-sectional areas of members in the structure are optimized under a constraint of the total mass so that the vibration transmission from disturbance sources to specified points...

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Veröffentlicht in:JSME International Journal Series C Mechanical Systems, Machine Elements and Manufacturing Machine Elements and Manufacturing, 2002, Vol.45(2), pp.402-408
Hauptverfasser: KUNIMOTO, Naosuke, IKEDA, Masao
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IKEDA, Masao
description This paper proposes vibration suppression design for adaptive truss structures which deform to achieve given tasks. The cross-sectional areas of members in the structure are optimized under a constraint of the total mass so that the vibration transmission from disturbance sources to specified points is suppressed. To measure the vibration transmission property, the H∞ norm of the transfer function is adopted. The dynamics of the adaptive structure changes following the deformation, which is described by a nominal model and a perturbation term. For optimization, the simulated annealing is employed.
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subjects Adaptive Truss Structure
Control Theory
Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Physics
Simulated Annealing
Solid mechanics
Structural and continuum mechanics
Structural Design
Vibration Suppression
Vibration, mechanical wave, dynamic stability (aeroelasticity, vibration control...)
Vibrations and mechanical waves
title Vibration Suppression Design of Adaptive Truss Structures by Simulated Annealing
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