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This book focuses on the design of Robotic Flexible Assembly Cell (RFAC) with multi-robots. Its main contribution consists of a new effective strategy for scheduling RFAC in a multi-product assembly environment, in which dynamic status and multi-objective optimization problems occur. The developed strategy, which is based on a combination of advanced solution approaches such as simulation, fuzzy logic, system modeling and the Taguchi optimization method, fills an important knowledge gap in the current literature and paves the way for future research towards the goal of employing flexible assembly systems as effectively as possible despite the complexity of their scheduling.
Computer Science --- Engineering & Applied Sciences --- Flexible manufacturing systems. --- Robots --- Conscious automata. --- Motion. --- Artificial consciousness --- Electronic brains --- Intelligent machines --- Mechanical brains --- Synthetic consciousness --- Movement of robots --- Robot motion --- Flexible production systems --- FMS (Production engineering) --- Manufacturing systems, Flexible --- Production systems, Flexible --- Engineering. --- Artificial intelligence. --- Computational intelligence. --- Robotics. --- Automation. --- Manufacturing industries. --- Machines. --- Tools. --- Computational Intelligence. --- Manufacturing, Machines, Tools. --- Robotics and Automation. --- Artificial Intelligence (incl. Robotics). --- Hand tools --- Handtools --- Hardware --- Implements, utensils, etc. --- Machinery --- Machines --- Manufactures --- Power (Mechanics) --- Technology --- Mechanical engineering --- Motors --- Power transmission --- Industries --- Automatic factories --- Automatic production --- Computer control --- Engineering cybernetics --- Factories --- Industrial engineering --- Mechanization --- Assembly-line methods --- Automatic control --- Automatic machinery --- CAD/CAM systems --- Robotics --- Automation --- Machine theory --- Intelligence, Computational --- Artificial intelligence --- Soft computing --- AI (Artificial intelligence) --- Artificial thinking --- Intellectronics --- Intelligence, Artificial --- 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 --- Curious devices --- Consciousness --- Cybernetics --- Biocomputers --- Perceptrons --- Motion --- Production engineering --- Computer integrated manufacturing systems --- Material requirements planning --- Manufactures. --- Manufacturing, Machines, Tools, Processes. --- Artificial Intelligence. --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries
Choose an application
This book focuses on the design of Robotic Flexible Assembly Cell (RFAC) with multi-robots. Its main contribution consists of a new effective strategy for scheduling RFAC in a multi-product assembly environment, in which dynamic status and multi-objective optimization problems occur. The developed strategy, which is based on a combination of advanced solution approaches such as simulation, fuzzy logic, system modeling and the Taguchi optimization method, fills an important knowledge gap in the current literature and paves the way for future research towards the goal of employing flexible assembly systems as effectively as possible despite the complexity of their scheduling.
Applied physical engineering --- Plant and equipment --- Production management --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- neuronale netwerken --- fuzzy logic --- werktuigen --- fabrieken --- cybernetica --- automatisering --- productie --- KI (kunstmatige intelligentie) --- machines --- ingenieurswetenschappen --- robots
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