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The IEEE Chinese Guidance, Navigation and Control Conference (IEEE CGNCC2016) is a biennial event, which is also one of the leading events in Guidance, Navigation and Control (GNC). It provides a forum for scientists and engineers over the world to present their new theoretical results and techniques in the fields of GNC. Topics of interests are in the broad areas of GNC, including but not limited to Control of Multiple Moving Objects Control Theory and Analysis Intelligent Computing, Communication and Control New Methods of Navigation, Estimation and Tracking Navigation, Guidance and Control of Aircraft Navigation, Guidance and Control of Spacecraft Navigation, Guidance and Control of Other Moving Objects Control of Multiple Moving Objects Man and Autonomous Unmanned Systems Guidance, Navigation and Control of Miniature Aircraft Sensor Systems for Guidance, Navigation and Control Advanced Design Simulation Software Survey and Discussion etc.
Navigation (Aeronautics) --- Aerospace engineering --- Guidance systems (Flight)
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Control theory --- Flight control --- Guidance systems (Flight)
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Space vehicles --- Navigation (Aeronautics) --- Guidance systems (Flight) --- Guidance systems.
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Guidance systems (Flight) --- Drone aircraft --- Vehicles, Remotely piloted. --- Control systems.
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Nonlinear problems in flight control have stimulated cooperation among engineers and scientists from a range of disciplines. Developments in computer technology allowed for numerical solutions of nonlinear control problems, while industrial recognition and applications of nonlinear mathematical models in solving technological problems is increasing. The aim of the book Advances in Flight Control Systems is to bring together reputable researchers from different countries in order to provide a comprehensive coverage of advanced and modern topics in flight control not yet reflected by other books. This product comprises 14 contributions submitted by 38 authors from 11 different countries and areas. It covers most of the currents main streams of flight control researches, ranging from adaptive flight control mechanism, fault tolerant flight control, acceleration based flight control, helicopter flight control, comparison of flight control systems and fundamentals. According to these themes the contributions are grouped in six categories, corresponding to six parts of the book.
Flight control. --- Control systems (Flight) --- Automatic control --- Guidance systems (Flight) --- Astronautics
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Space vehicle accidents --- Space vehicles --- Prevention. --- Design and construction. --- Guidance systems. --- Guidance systems (Flight) --- Accidents --- Astronautics
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ADCS - Spacecraft Attitude Determination and Control provides a complete introduction to spacecraft control. The book covers all elements of attitude control system design, including kinematics, dynamics, orbits, disturbances, actuators, sensors, and mission operations. Essential hardware details are provided for star cameras, reaction wheels, sun sensors, and other key components. The book explores how to design a control system for a spacecraft, control theory, and actuator and sensor details. Examples are drawn from the author's 40 years of industrial experience with spacecraft such as GGS, GPS IIR, Mars Observer, and commercial communications satellites, and includes historical background and real-life examples.
Space vehicles --- Guidance systems (Flight) --- Attitude control systems (Astronautics) --- Attitude control systems. --- Guidance systems. --- Control systems
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