New Semi-active Vibration Control with Serial-Stiffness-Switch-System Based on Vibration Energy Harvesting

New Semi-active Vibration Control with Serial-Stiffness-Switch-System Based on Vibration Energy Harvesting
Title New Semi-active Vibration Control with Serial-Stiffness-Switch-System Based on Vibration Energy Harvesting PDF eBook
Author Chaoqing Min
Publisher
Pages 0
Release 2018
Genre
ISBN

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Es folgt eine experimentelle Validierung dieser neuartigen Strategie zur Schwingungssteuerung vorgestellt und ein drehender Prüfstand entwickelt. Der Prüfstand verwendet zwei ringförmig angeordnete Elektromagnetplatten zusammen mit einer Ankerwelle als zwei mechanische Schalter, um die Verbindung oder Trennung von zwei Spiralfedern mit einem Lastträgheitsmoment zu erreichen. Die Speicherung von Schwingungsenergie und die Schwingungsreduktion werden auf diesem Versuchssystem getestet. Neben einer harmonischen Störung wird auch eine Anfangsgeschwindigkeit ungleich Null berücksichtigt. Um in diesem Fall die Schwingungsreduktion zu verbessern, wird ein neues Schaltgesetz vorgeschlagen. Mit Hilfe der Phasenebene wird das transiente und stationäre Ratterverhalten von 4S analysiert. Das Schaltgesetz ermöglicht eine schnelle Umwandlung der anfänglichen kinetischen Energie, die in beiden Federn zu gleichen Teilen gespeichert wird. Dies ist numerisch und experimentell validiert. .

Semi-active Vibration Control Using Piezoelectric-based Switched Stiffness

Semi-active Vibration Control Using Piezoelectric-based Switched Stiffness
Title Semi-active Vibration Control Using Piezoelectric-based Switched Stiffness PDF eBook
Author Arun Ramaratnam
Publisher
Pages 212
Release 2004
Genre
ISBN

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Technology of Semiactive Devices and Applications in Vibration Mitigation

Technology of Semiactive Devices and Applications in Vibration Mitigation
Title Technology of Semiactive Devices and Applications in Vibration Mitigation PDF eBook
Author Fabio Casciati
Publisher John Wiley & Sons
Pages 268
Release 2006-06-14
Genre Science
ISBN 0470022906

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Researchers have studied many methods of using active and passive control devices for absorbing vibratory energy. Active devices, while providing significant reductions in structural motion, typically require large (and often multiply-redundant) power sources, and thereby raise concerns about stability. Passive devices are fixed and cannot be modified based on information of excitation or structural response. Semiactive devices on the other hand can provide significant vibration reductions comparable to those of active devices but with substantially reduced power requirements and in a stable manner. Technology of Semiactive Devices and Applications in Vibration Mitigation presents the most up-to-date research into semiactive control systems and illustrates case studies showing their implementation and effectiveness in mitigating vibration. The material is presented in a way that people not familiar with control or structural dynamics can easily understand. Connecting structural dynamics with control, this book: Provides a history of semiactive control and a bibliographic review of the most common semiactive control strategies. Presents state-of-the-art semiactive control systems and illustrates several case studies showing their implementation and effectiveness to mitigate vibration. Illustrates applications related to noise attenuation, wind vibration damping and earthquake effects mitigation amongst others. Offers a detailed comparison between collocated and non-collocated systems. Formulates the design concepts and control algorithms in simple and readable language. Includes an appendix that contains critical considerations about semiactive devices and methods of evaluation of the original damping of a structure. Technology of Semiactive Devices and Applications in Vibration Mitigation is a must-have resource for researchers, practitioners and design engineers working in civil, automotive and mechanical engineering. In addition it is undoubtedly the key reference for all postgraduate students studying in the field.

Optimized Engineering Vibration Isolation, Absorption and Control

Optimized Engineering Vibration Isolation, Absorption and Control
Title Optimized Engineering Vibration Isolation, Absorption and Control PDF eBook
Author Wei Huang
Publisher Springer Nature
Pages 361
Release 2023-05-20
Genre Technology & Engineering
ISBN 9819922135

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This book presents the research results of advanced vibration control technology, based on two types of typical equipment in industrial engineering of China: power equipment and vibration-sensitive equipment. The main contents of this book include optimized active control strategy research, semi-active control research that can track and equivalently achieve active control effects, refined analysis of active control based on finite element method, research on the impact of vibration isolator layout on vibration isolation performance, passive and active control research based on system freedom decoupling and load decoupling, realized passive and active control research using quasi-zero stiffness system based on positive and negative stiffness, intelligent sensors optimization deployment of plane and space structure, and related key technology application cases in engineering applications. This book provides useful references for engineers and researchers in industrial engineering and technical support for practitioners in the development of China's high-end industry.

Vibration Control

Vibration Control
Title Vibration Control PDF eBook
Author Mickaël Lallart
Publisher BoD – Books on Demand
Pages 394
Release 2010-08-18
Genre Technology & Engineering
ISBN 9533071176

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Vibrations are a part of our environment and daily life. Many of them are useful and are needed for many purposes, one of the best example being the hearing system. Nevertheless, vibrations are often undesirable and have to be suppressed or reduced, as they may be harmful to structures by generating damages or compromise the comfort of users through noise generation of mechanical wave transmission to the body. the purpose of this book is to present basic and advanced methods for efficiently controlling the vibrations and limiting their effects. Open-access publishing is an extraordinary opportunity for a wide dissemination of high quality research. This book is not an exception to this, and I am proud to introduce the works performed by experts from all over the world.

Vibration Control

Vibration Control
Title Vibration Control PDF eBook
Author Mickaël Lallart
Publisher IntechOpen
Pages 392
Release 2010-08-18
Genre Technology & Engineering
ISBN 9789533071176

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Vibrations are a part of our environment and daily life. Many of them are useful and are needed for many purposes, one of the best example being the hearing system. Nevertheless, vibrations are often undesirable and have to be suppressed or reduced, as they may be harmful to structures by generating damages or compromise the comfort of users through noise generation of mechanical wave transmission to the body. the purpose of this book is to present basic and advanced methods for efficiently controlling the vibrations and limiting their effects. Open-access publishing is an extraordinary opportunity for a wide dissemination of high quality research. This book is not an exception to this, and I am proud to introduce the works performed by experts from all over the world.

Enhanced Self-powered Vibration Damping of Smart Structures by Modal Energy Transfer

Enhanced Self-powered Vibration Damping of Smart Structures by Modal Energy Transfer
Title Enhanced Self-powered Vibration Damping of Smart Structures by Modal Energy Transfer PDF eBook
Author Zhen Wang
Publisher
Pages 0
Release 2015
Genre
ISBN

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In a context of embedded structures, the next challenge is to develop an efficient, energetically autonomous vibration control technique. Synchronized Switch Damping techniques (SSD) have been demonstrated interesting properties in vibration control with a low power consumption. For compliant or soft smart structures, modal control is a promising way as specific modes can be targetted. This Ph-D work examines a novel energy transfer concept and design of simultaneous energy harvesting and vibration control on the same host structure. The basic idea is that the structure is able to extract modal energy from the chosen modes, and utilize this harvested energy to suppress the target modes via modal control method. We propose here a new technique to enhance the classic SSD circuit due to energy harvesting and energy transfer. Our architecture called Modal Synchronized Switching Damping and Harvesting (Modal SSDH) is composed of a harvesting circuit (Synchronized Switch Harvesting on Inductor SSHI), a Buck-Boost converter and a vibration modal control circuit (SSD). Various alternatives of our SSDH techniques were proposed and simulated. A real smart structure is modeled and used as specific case to test the efficiency of our concept. Piezoelectric sensors and actuators are taken as active transducers, as they develop the direct and inverse effects useful for the energy harvesting and the vibration damping. Optimization are running out and the basic design factors are discussed in terms of energy transfer. Simulations, carried out under bi-harmonic and noise excitation, underline that our new SSDH concept is efficient and robust. Our technique improve the damping effect of semi-active method compared to classic SSD method thanks to the use of harvested modal energy.