Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.00 vteřin. 
Development of Autopilot and Flight Director Modes inside a Simulink Environment
Novák, Jiří ; Matoušek, Radomil (oponent) ; Nechvátal, Luděk (vedoucí práce)
This thesis is focused on the development of a simulation environment in Matlab/Simulink for a selected aircraft. The position and orientation of the aircraft moving in the air is described by six-degrees-of-freedom equations of motion. The system of translational, rotational and kinematic equations forms a set of nine nonlinear first order differential equations. These equations can be linearized around an equilibrium point referred to as a steady--state flight condition. The simulation environment contains a developed flight control system based on PID controllers. A basic autopilot is capable of holding pitch attitude and roll angle. Flight director modes including altitude hold, heading select, vertical speed mode, flight level change mode, altitude capture mode and navigational mode based on a nonlinear guidance law are presented. A Pareto optimality based optimization tuning process is developed to optimally tune the regulators. The simulation is graphically represented in FlightGear open source software.
Development of Autopilot and Flight Director Modes inside a Simulink Environment
Novák, Jiří ; Matoušek, Radomil (oponent) ; Nechvátal, Luděk (vedoucí práce)
This thesis is focused on the development of a simulation environment in Matlab/Simulink for a selected aircraft. The position and orientation of the aircraft moving in the air is described by six-degrees-of-freedom equations of motion. The system of translational, rotational and kinematic equations forms a set of nine nonlinear first order differential equations. These equations can be linearized around an equilibrium point referred to as a steady--state flight condition. The simulation environment contains a developed flight control system based on PID controllers. A basic autopilot is capable of holding pitch attitude and roll angle. Flight director modes including altitude hold, heading select, vertical speed mode, flight level change mode, altitude capture mode and navigational mode based on a nonlinear guidance law are presented. A Pareto optimality based optimization tuning process is developed to optimally tune the regulators. The simulation is graphically represented in FlightGear open source software.

Chcete být upozorněni, pokud se objeví nové záznamy odpovídající tomuto dotazu?
Přihlásit se k odběru RSS.