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This edited volume presents selected contributions from the International Conference on Experimental Vibration Analysis of Civil Engineering Structures held in San Diego, California in 2017 (EVACES2017). The event brought together engineers, scientists, researchers, and practitioners, providing a forum for discussing and disseminating the latest developments and achievements in all major aspects of dynamic testing for civil engineering structures, including instrumentation, sources of excitation, data analysis, system identification, monitoring and condition assessment, in-situ and laboratory experiments, codes and standards, and vibration mitigation.
Engineering. --- Vibration. --- Dynamical systems. --- Dynamics. --- Civil engineering. --- Civil Engineering. --- Vibration, Dynamical Systems, Control. --- Structural dynamics --- Cycles --- Mechanics --- Sound --- Engineering --- Public works --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Physics --- Statics --- Multibody systems. --- Mechanics, Applied. --- Multibody Systems and Mechanical Vibrations. --- Multi-body systems --- Systems, Multibody --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics
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This volume contains the proceedings of the 26th International Conference on Robotics in Alpe-Adria-Danube Region, RAAD 2017, held at the Polytechnic University of Turin, Italy, from June 21-23, 2017. The conference brought together academic and industrial researchers in robotics from 30 countries, the majority of them affiliated to the Alpe-Adria-Danube Region, and their worldwide partners. RAAD 2017 covered all major areas of R&D and innovation in robotics, including the latest research trends. The book provides an overview on the advances in service and industrial robotics. The topics are presented in a sequence starting from the classical robotic subjects, such as kinematics, dynamics, structures, control, and ending with the newest topics, like human-robot interaction and biomedical applications. Researchers involved in the robotic field will find this an extraordinary and up-to-date perspective on the state of the art in this area.
Engineering. --- Vibration. --- Dynamical systems. --- Dynamics. --- Mechanical engineering. --- Robotics. --- Automation. --- Industrial engineering. --- Production engineering. --- Biomedical engineering. --- Robotics and Automation. --- Mechanical Engineering. --- Biomedical Engineering. --- Industrial and Production Engineering. --- Vibration, Dynamical Systems, Control. --- Robotics --- Biomedical Engineering and Bioengineering. --- Cycles --- Mechanics --- Sound --- Management engineering --- Simplification in industry --- Engineering --- Value analysis (Cost control) --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Medicine --- Engineering, Mechanical --- Machinery --- Steam engineering --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Physics --- Statics --- Manufacturing engineering --- Process engineering --- Industrial engineering --- Mechanical engineering --- Automatic factories --- Automatic production --- Computer control --- Engineering cybernetics --- Factories --- Mechanization --- Assembly-line methods --- Automatic control --- Automatic machinery --- CAD/CAM systems --- Automation --- Machine theory --- Control engineering. --- Multibody systems. --- Mechanics, Applied. --- Control, Robotics, Automation. --- Multibody Systems and Mechanical Vibrations. --- Applied mechanics --- Engineering mathematics --- Multi-body systems --- Systems, Multibody --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers
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This edited monograph contains research contributions on a wide range of topics such as stochastic control systems, adaptive control, sliding mode control and parameter identification methods. The book also covers applications of robust and adaptice control to chemical and biotechnological systems. This collection of papers commemorates the 70th birthday of Dr. Alexander S. Poznyak. .
Engineering. --- System theory. --- Calculus of variations. --- Vibration. --- Dynamical systems. --- Dynamics. --- Control engineering. --- Control. --- Systems Theory, Control. --- Vibration, Dynamical Systems, Control. --- Calculus of Variations and Optimal Control; Optimization. --- Control theory. --- Dynamics --- Machine theory --- Systems theory. --- Mathematical optimization. --- Control and Systems Theory. --- Cycles --- Mechanics --- Sound --- Optimization (Mathematics) --- Optimization techniques --- Optimization theory --- Systems optimization --- Mathematical analysis --- Maxima and minima --- Operations research --- Simulation methods --- System analysis --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Physics --- Statics --- Systems, Theory of --- Systems science --- Science --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Automation --- Programmable controllers --- Isoperimetrical problems --- Variations, Calculus of --- Philosophy --- Multibody systems. --- Mechanics, Applied. --- Systems Theory, Control . --- Multibody Systems and Mechanical Vibrations. --- Calculus of Variations and Optimization. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Multi-body systems --- Systems, Multibody
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This book presents the most important findings from the 9th International Conference on Modelling, Identification and Control (ICMIC’17), held in Kunming, China on July 10–12, 2017. It covers most aspects of modelling, identification, instrumentation, signal processing and control, with a particular focus on the applications of research in multi-agent systems, robotic systems, autonomous systems, complex systems, and renewable energy systems. The book gathers thirty comprehensively reviewed and extended contributions, which help to promote evolutionary computation, artificial intelligence, computation intelligence and soft computing techniques to enhance the safety, flexibility and efficiency of engineering systems. Taken together, they offer an ideal reference guide for researchers and engineers in the fields of electrical/electronic engineering, mechanical engineering and communication engineering. .
Simulation methods --- Automatic control --- Identification --- Data processing --- Computer simulation. --- Systems theory. --- Vibration. --- Control. --- Simulation and Modeling. --- Systems Theory, Control. --- Vibration, Dynamical Systems, Control. --- Robotics and Automation. --- Cycles --- Mechanics --- Sound --- Computer modeling --- Computer models --- Modeling, Computer --- Models, Computer --- Simulation, Computer --- Electromechanical analogies --- Mathematical models --- Model-integrated computing --- Forensic identification --- Control and Systems Theory. --- Control engineering. --- System theory. --- Dynamical systems. --- Dynamics. --- Robotics. --- Automation. --- Automatic factories --- Automatic production --- Computer control --- Engineering cybernetics --- Factories --- Industrial engineering --- Mechanization --- Assembly-line methods --- Automatic machinery --- CAD/CAM systems --- Robotics --- Automation --- Machine theory --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Physics --- Statics --- Systems, Theory of --- Systems science --- Science --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers --- Philosophy --- Control theory. --- Multibody systems. --- Mechanics, Applied. --- Computer Modelling. --- Systems Theory, Control . --- Multibody Systems and Mechanical Vibrations. --- Control, Robotics, Automation. --- Dynamics --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Multi-body systems --- Systems, Multibody
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These are the Proceedings of the 6th International Symposium on Multibody Systems and Mechatronics (MUSME 2017) which was held in Florianópolis, Brazil, October 24-28, 2017. Topics addressed include analysis and synthesis of mechanisms; dynamics of multibody systems; design algorithms for mechatronic systems; simulation procedures and results; prototypes and their performance; robots and micromachines; experimental validations; theory of mechatronic simulation; mechatronic systems; and control of mechatronic systems. The MUSME 2017 Symposium was one of the activities of the FEIbIM Commission for Mechatronics and IFToMM technical Committees for Multibody Dynamics, Robotics and Mechatronics.
Engineering. --- Computer mathematics. --- Vibration. --- Dynamical systems. --- Dynamics. --- Machinery. --- Mechatronics. --- Biomedical engineering. --- Vibration, Dynamical Systems, Control. --- Machinery and Machine Elements. --- Biomedical Engineering. --- Computational Science and Engineering. --- Mechatronics --- Multibody systems --- Multi-body systems --- Systems, Multibody --- Mechanics, Analytic --- Computer science. --- Biomedical Engineering and Bioengineering. --- Informatics --- Science --- Cycles --- Mechanics --- Sound --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Construction --- Industrial arts --- Technology --- Computer mathematics --- Electronic data processing --- Mathematics --- Machinery --- Machines --- Manufactures --- Power (Mechanics) --- Mechanical engineering --- Motors --- Power transmission --- Dynamical systems --- Kinetics --- Force and energy --- Physics --- Statics --- Microelectronics --- Microelectromechanical systems --- Curious devices
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