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Agriculture and state --- Agriculture --- Economic aspects --- United States.
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A large-scale system is composed of several interconnected subsystems. For such a system it is often desired to have some form of decentralization in the control structure, since it is typically not realistic to assume that all output measurements can be transmitted to every local control station. Problems of this kind can appear in electric power systems, communication networks, large space structures, robotic systems, economic systems, and traffic networks, to name only a few. Typical large-scale control systems have several local control stations which observe only local outputs and control only local inputs. All controllers are involved, however, in the control operation of the overall system. The focus of this book is on the efficient control of interconnected systems, and it presents systems analysis and controller synthesis techniques using a variety of methods. A systematic study of multi-input, multi-output systems is carried out and illustrative examples are given to clarify the ideas. Provides computational techniques which can be readily programmed in MATLAB; Includes numerous solved design examples; Offers end of chapter exercises with real-world industrial examples.
Systems theory. --- Vibration. --- Systems Theory, Control. --- Control, Robotics, Mechatronics. --- Vibration, Dynamical Systems, Control. --- Cycles --- Mechanics --- Sound --- Control theory. --- Dynamics --- Machine theory --- System theory. --- Control engineering. --- Robotics. --- Mechatronics. --- Dynamical systems. --- Dynamics. --- Systems, Theory of --- Systems science --- Science --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Physics --- Statics --- Mechanical engineering --- Microelectronics --- Microelectromechanical systems --- Automation --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers --- Philosophy
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A large-scale system is composed of several interconnected subsystems. For such a system it is often desired to have some form of decentralization in the control structure, since it is typically not realistic to assume that all output measurements can be transmitted to every local control station. Problems of this kind can appear in electric power systems, communication networks, large space structures, robotic systems, economic systems, and traffic networks, to name only a few. Typical large-scale control systems have several local control stations which observe only local outputs and control only local inputs. All controllers are involved, however, in the control operation of the overall system. The focus of this book is on the efficient control of interconnected systems, and it presents systems analysis and controller synthesis techniques using a variety of methods. A systematic study of multi-input, multi-output systems is carried out and illustrative examples are given to clarify the ideas. Provides computational techniques which can be readily programmed in MATLAB; Includes numerous solved design examples; Offers end of chapter exercises with real-world industrial examples.
Mathematics --- Classical mechanics. Field theory --- Mechanical properties of solids --- Electrical engineering --- Applied physical engineering --- Artificial intelligence. Robotics. Simulation. Graphics --- patroonherkenning --- superclaus proces --- systeemtheorie --- robots --- dynamica --- automatische regeltechniek --- optica
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Mathematics --- Classical mechanics. Field theory --- Mechanical properties of solids --- Electrical engineering --- Applied physical engineering --- Artificial intelligence. Robotics. Simulation. Graphics --- patroonherkenning --- superclaus proces --- systeemtheorie --- robots --- dynamica --- automatische regeltechniek --- optica
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