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Information systems --- Air traffic --- certificatie --- Air traffic control --- Aeronautics --- Circulation aérienne --- Aéronautique --- Safety measures --- Contrôle --- Sécurité --- Mesures --- Airplanes --- Collision avoidance --- -Air traffic control --- -Airplanes --- -Aeroplanes --- Aircraft, Fixed wing --- Fixed wing aircraft --- Planes (Airplanes) --- Flying-machines --- Aircraft industry --- ATC (Air traffic control) --- Airports --- Aerostation --- Air navigation --- Aviation --- Communication and traffic --- Aerodynamics --- Airships --- Astronautics --- Balloons --- Flight --- Communication systems --- -Safety measures --- Circulation aérienne --- Aéronautique --- Contrôle --- Sécurité --- Airplane near-collision avoidance --- Avoidance of airplane collisions --- Avoidance of mid-air collisions --- Collision avoidance in aeronautics --- Mid-air collision avoidance --- Near misses (Aeronautics) --- Airplanes - Collision avoidance --- Air traffic control - European Union countries --- Aeronautics - European Union countries - Safety measures
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Air traffic --- European Union --- Instrument landing systems. --- Airplanes --- Air traffic control --- Electronic equipment. --- Instrument landing systems --- Blind landing --- ILSs (Instrument landing systems) --- Instrument approach systems --- Instrument flying --- Landing aids (Aeronautics) --- ATC (Air traffic control) --- Aeronautics --- Airports --- Electronic apparatus and appliances --- Electronic equipment --- Safety measures --- Communication systems --- Airplanes - Electronic equipment. --- Air traffic control - European Union countries.
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Here a leading researcher provides a comprehensive treatment of the design of automatic control logic for spacecraft and aircraft. In this book Arthur Bryson describes the linear-quadratic-regulator (LQR) method of feedback control synthesis, which coordinates multiple controls, producing graceful maneuvers comparable to those of an expert pilot. The first half of the work is about attitude control of rigid and flexible spacecraft using momentum wheels, spin, fixed thrusters, and gimbaled engines. Guidance for nearly circular orbits is discussed. The second half is about aircraft attitude and flight path control. This section discusses autopilot designs for cruise, climb-descent, coordinated turns, and automatic landing. One chapter deals with controlling helicopters near hover, and another offers an introduction to the stabilization of aeroelastic instabilities. Throughout the book there is a strong emphasis on the mathematical modeling necessary for designing a good feedback control system. The appendixes summarize analysis of linear dynamic systems, synthesis of analog and digital feedback control, simulation, and modeling of flexible vehicles.
Attitude control systems --- Véhicules spatiaux --- Avions --- Altitude control systems --- Systèmes de commande d'orientation --- Systèmes de commande --- Space vehicles --- Airplanes --- Altitude control systems. --- Control systems --- Systèmes de commande d'orientation. --- Systèmes de commande. --- 681.5 --- Regeltechniek --- Attitude control systems (Astronautics) --- Flight control --- Attitude control systems. --- Control systems. --- Space vehicles - Attitude control systems --- Airplanes - Control systems
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Planetary rings --- Astronautics in astronomy --- Aeronautics in astronomy --- Planetary ring systems --- Ring systems of planets --- Rings, Planetary --- Planets --- Satellites --- Astronomy --- Space astronomy --- Airplanes in astronomy --- 52 --- 52 Astronomie. Astrofysica. Ruimteonderzoek. Geodesie --- 52 Astronomy. Astrophysics. Space research. Geodesy --- Astronomie. Astrofysica. Ruimteonderzoek. Geodesie --- Astronomy. Astrophysics. Space research. Geodesy
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