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In this volume, concepts, technologies and developments in the field of building-component manufacturing - based on concrete, brick, wood and steel as building materials and on large-scale prefabrication, delivering complex, customized components and products - are introduced and discussed. Robotic industrialization refers to the transformation of parts and low-level components into higher-level components, modules and finally building systems by highly mechanized, automated, or robot-supported industrial settings in structured off-site environments. Components and modules are open building systems (in modular building product structures) that are delivered by suppliers to original equipment manufacturers such as, for example, large-scale prefabrication companies or automated/robotic on-site factories. In particular, innovative large-scale prefabrication companies have altered the building structures, manufacturing processes, and organizational structures significantly to be able to assemble in their factories high-level components and modules from Tier-1 suppliers into customized buildings by heavily utilizing robotic technology in combination with automated logistics and production lines.
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IEEE ISIE is the largest summer conference of the IEEE Industrial Electronics Society, which is an international conference for sharing breakthroughs in research, emerging technologies, and success stories in industrial electronics and its applications.
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Robots --- Robots, Industrial. --- Calibration.
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Robots --- Robots, Industrial. --- Calibration.
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With an emphasis on practical applications and industrial participation, TePRA provides researchers, innovators, entrepreneurs and robotics professionals with a balanced forum in robotics science, engineering and technology The presentations selected through IEEE s rigorous peer review process highlights new uses of algorithms, components, and whole systems in practical robot applications While papers are solicited in all related areas of robotics and automation, the conference tracks include?Medical and Rehabilitation?Military and Security?Actuation and Manipulation?Consumer and Industrial?Best Practices and Experience Reports?Robust and Reliable Robotics Technologies?Resource Aware Algorithms?Power & Communications?Sensing?Software Development Tools.
Mobile robots --- Robotics --- Robots, Industrial
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Robot-Oriented Design introduces the design, innovation, and management methodologies that are key to the realization and implementation of the advanced concepts and technologies presented in the subsequent volumes of the Cambridge Handbooks on Construction Robotics series. This book describes the efficient deployment of advanced construction and building technology. It is concerned with the co-adaptation of construction products, processes, organization, and management, and with automated/robotic technology, so that the implementation of modern technology becomes easier and more efficient. It is also concerned with technology and innovation management methodologies and the generation of life cycle-oriented views related to the use of advanced technologies in construction.
Robots, Industrial. --- Robotics --- Manufacturing processes --- Industrial applications. --- Automation.
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Based on the author's wide-ranging experience as a robot user, supplier and consultant, Implementation of Robot Systems will enable you to approach the use of robots in your plant or facility armed with the right knowledge base and awareness of critical factors to take into account. This book starts with the basics of typical applications and robot capabilities before covering all stages of successful robot integration. Potential problems and pitfalls are flagged and worked through so that you can learn from others' mistakes and plan proactively with possible issues in mind. Taking in content
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The primary aim of this volume is to provide researchers and engineers from both academic and industry with up-to-date coverage of new results in the field of robotic welding, intelligent systems and automation. The book is mainly based on papers selected from the 2014 International Conference on Robotic Welding, Intelligence and Automation (RWIA’2014), held Oct. 25-27, 2014, at Shanghai, China. The articles show that the intelligentized welding manufacturing (IWM) is becoming an inevitable trend with the intelligentized robotic welding as the key technology. The volume is divided into four logical parts: Intelligent Techniques for Robotic Welding, Sensing of Arc Welding Processing, Modeling and Intelligent Control of Welding Processing, as well as Intelligent Control and its Applications in Engineering. .
Engineering. --- Computational Intelligence. --- Artificial Intelligence (incl. Robotics). --- Robotics and Automation. --- Artificial intelligence. --- Ingénierie --- Intelligence artificielle --- Robots, Industrial -- Congresses. --- Welding -- Automation -- Congresses. --- Engineering & Applied Sciences --- Computer Science --- Welding --- Robots, Industrial --- Automation --- Computational intelligence. --- Robotics. --- Automation. --- Automatic factories --- Automatic production --- Computer control --- Engineering cybernetics --- Factories --- Industrial engineering --- Mechanization --- Assembly-line methods --- Automatic control --- Automatic machinery --- CAD/CAM systems --- Robotics --- Machine theory --- Intelligence, Computational --- Artificial intelligence --- Soft computing --- AI (Artificial intelligence) --- Artificial thinking --- Electronic brains --- Intellectronics --- Intelligence, Artificial --- Intelligent machines --- Machine intelligence --- Thinking, Artificial --- Bionics --- Cognitive science --- Digital computer simulation --- Electronic data processing --- Logic machines --- Self-organizing systems --- Simulation methods --- Fifth generation computers --- Neural computers --- Construction --- Industrial arts --- Technology --- Forging --- Manufacturing processes --- Metal-work --- Sealing (Technology) --- Artificial Intelligence.
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