Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges
There are various techniques to optimize either structural parameters, or structural controllers, but there are not many techniques that can simultaneously optimize the structural parameters and controller. The advantage of integrating the structural and controller optimization problems is that structure and controller interaction is taken into account in the design process and a more efficient overall design (lower control force/lighter weight) can be achieved, and also multidisciplinary design optimization can be performed. The down side is that the combined optimization problem is more difficult to formulate and solve, and computations are increased. This volume is a comprehensive treatment of dynamic analysis and control techniques in structural dynamic systems and the wide variety of issues and techniques that fall within this broad area, including the interactions between structural control systems and structural system parameters.
1140678570
Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges
There are various techniques to optimize either structural parameters, or structural controllers, but there are not many techniques that can simultaneously optimize the structural parameters and controller. The advantage of integrating the structural and controller optimization problems is that structure and controller interaction is taken into account in the design process and a more efficient overall design (lower control force/lighter weight) can be achieved, and also multidisciplinary design optimization can be performed. The down side is that the combined optimization problem is more difficult to formulate and solve, and computations are increased. This volume is a comprehensive treatment of dynamic analysis and control techniques in structural dynamic systems and the wide variety of issues and techniques that fall within this broad area, including the interactions between structural control systems and structural system parameters.
210.0 In Stock
Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges

Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges

by Cornelius T. Leondes (Editor)
Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges

Structural Dynamic Systems Computational Techniques and Optimization: Techniques in Buildings and Bridges

by Cornelius T. Leondes (Editor)

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Overview

There are various techniques to optimize either structural parameters, or structural controllers, but there are not many techniques that can simultaneously optimize the structural parameters and controller. The advantage of integrating the structural and controller optimization problems is that structure and controller interaction is taken into account in the design process and a more efficient overall design (lower control force/lighter weight) can be achieved, and also multidisciplinary design optimization can be performed. The down side is that the combined optimization problem is more difficult to formulate and solve, and computations are increased. This volume is a comprehensive treatment of dynamic analysis and control techniques in structural dynamic systems and the wide variety of issues and techniques that fall within this broad area, including the interactions between structural control systems and structural system parameters.

Product Details

ISBN-13: 9781040282816
Publisher: CRC Press
Publication date: 12/20/2024
Series: Gordon and Breach International Series in Engineering, Technolo
Sold by: Barnes & Noble
Format: eBook
Pages: 304
File size: 3 MB

About the Author

Cornelius T. Leondes (Emeritus Professor, University of California, USA)

Table of Contents

Preface; Techniques in Vibration Analysis of Structural Steel Frames; Techniques in Transient Analysis of Semi-Rigid Steel Frames; Some Techniques in Optimal Control of Building Frames; Behaviour and Analysis Techniques of Tubular Buildings; Techniques in Combined Boundary Element/Finite Strip/Finite Element Analysis of Bridges; Nonlinear Analysis of Thin-Walled Structures

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