Active Hybrid And Semi Active Structural Control


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Active, Hybrid, and Semi-active Structural Control


Active, Hybrid, and Semi-active Structural Control

Author: S. Y. Chu

language: en

Publisher: John Wiley & Sons

Release Date: 2005-08-05


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Need to develop, document, and synthesize?This comprehensive handbook is designed to provide you with the knowledge needed to successfully implement an active, hybrid or semi-active control system to a structure for safeguarding it against environmental forces such as wind or earthquakes.

Active, Hybrid, and Semi-active Structural Control


Active, Hybrid, and Semi-active Structural Control

Author: S. Y. Chu

language: en

Publisher:

Release Date: 2009-05-26


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This comprehensive handbook is designed to provide the reader with the knowledge needed to successfully implement an active, hybrid or semi-active control system to a structure, safeguarding it against environmental forces such as wind or earthquakes. Written by leading experts in structural control, this book: Emphasises fail-safe techniques and validates their implementation through simulations. Examines the implicit issues between theoretical development and actual implementation of systems. Identifies important hardware and software safety features. Describes a PC-based system simulator, which simulates the real-time response of structure and control hardware. Active, Hybrid and Semi-active Structural Control is a must have reference for researchers, practitioners and design engineers working in civil, aerospace, automotive and mechanical engineering. It is undoubtedly the key resource for all postgraduate students in this rapidly growing area of research interest and development.

Advanced Dynamics and Control of Structures and Machines


Advanced Dynamics and Control of Structures and Machines

Author: Hans Irschik

language: en

Publisher: Springer

Release Date: 2014-05-04


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This book, intended for people in engineering and fundamental sciences, presents an integrated mathematical methodology for advanced dynamics and control of structures and machines, ranging from the derivation of models up to the control synthesis problem. This point of view is particularly useful as the physical insight and the associated structural properties, related e.g. to the Lagrangian or Hamiltonian framework, can be advantageously utilized. To this end, up to date results in disciplines like continuum mechanics, analytical mechanics, thermodynamics and electrodynamics are presented exploiting the differential geometric properties, with the basic notions of this coordinate-free approach revisited in an own chapter. In order to illustrate the proposed methodologies, several industrial applications, e.g., the derivation of exact solutions for the deformation compensation by shaped actuation in elastic bodies, or the coordination of rigid and flexible joint robots, are discussed.