Gavilan et al., 2015 - Google Patents
Adaptive control for aircraft longitudinal dynamics with thrust saturationGavilan et al., 2015
View PDF- Document ID
- 5593342591251214262
- Author
- Gavilan F
- Vazquez R
- Acosta J
- Publication year
- Publication venue
- Journal of guidance, control, and dynamics
External Links
Snippet
An output-feedback control law is designed for the longitudinal flight dynamics of an aircraft. The proposed control law is designed using the adaptive backstepping method and does not require any knowledge of aircraft aerodynamics beyond well-known qualitative physical …
- 230000003044 adaptive 0 title abstract description 39
Classifications
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/08—Control of attitude, i.e. control of roll, pitch, or yaw
- G05D1/0808—Control of attitude, i.e. control of roll, pitch, or yaw specially adapted for aircraft
- G05D1/0816—Control of attitude, i.e. control of roll, pitch, or yaw specially adapted for aircraft to ensure stability
- G05D1/0825—Control of attitude, i.e. control of roll, pitch, or yaw specially adapted for aircraft to ensure stability using mathematical models
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/10—Simultaneous control of position or course in three dimensions
- G05D1/101—Simultaneous control of position or course in three dimensions specially adapted for aircraft
- G05D1/104—Simultaneous control of position or course in three dimensions specially adapted for aircraft involving a plurality of aircrafts, e.g. formation flying
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/0011—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot associated with a remote control arrangement
- G05D1/0044—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot associated with a remote control arrangement by providing the operator with a computer generated representation of the environment of the vehicle, e.g. virtual reality, maps
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/04—Control of altitude or depth
- G05D1/042—Control of altitude or depth specially adapted for aircraft
- G05D1/046—Control of altitude or depth specially adapted for aircraft to counteract a perturbation, e.g. gust of wind
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B13/00—Adaptive control systems, i.e. systems automatically adjusting themselves to have a performance which is optimum according to some preassigned criterion
- G05B13/02—Adaptive control systems, i.e. systems automatically adjusting themselves to have a performance which is optimum according to some preassigned criterion electric
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64C—AEROPLANES; HELICOPTERS
- B64C2201/00—Unmanned aerial vehicles; Equipment therefor
- B64C2201/10—Unmanned aerial vehicles; Equipment therefor characterised by the lift producing means
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Gavilan et al. | Adaptive control for aircraft longitudinal dynamics with thrust saturation | |
Labbadi et al. | Robust adaptive backstepping fast terminal sliding mode controller for uncertain quadrotor UAV | |
Smeur et al. | Adaptive incremental nonlinear dynamic inversion for attitude control of micro air vehicles | |
Chowdhary et al. | Guidance and control of airplanes under actuator failures and severe structural damage | |
Di Francesco et al. | Modeling and incremental nonlinear dynamic inversion control of a novel unmanned tiltrotor | |
Zhen et al. | Adaptive super-twisting control for automatic carrier landing of aircraft | |
Liu et al. | Disturbance rejection flight control for small fixed-wing unmanned aerial vehicles | |
Farrell et al. | Backstepping-based flight control with adaptive function approximation | |
Nabi et al. | Effects of structural failure on the safe flight envelope of aircraft | |
Sonneveldt et al. | Nonlinear adaptive trajectory control applied to an F-16 model | |
Dhadekar et al. | Robust control of quadrotor using uncertainty and disturbance estimation | |
Zheng et al. | Observer-based backstepping longitudinal control for carrier-based UAV with actuator faults | |
Pfeifle et al. | Cascaded incremental nonlinear dynamic inversion for three-dimensional spline-tracking with wind compensation | |
Chowdhary et al. | Rapid transfer of controllers between UAVs using learning-based adaptive control | |
Zhou et al. | Station-keeping control of an underactuated stratospheric airship | |
Prabhakar et al. | Trajectory-driven adaptive control of autonomous unmanned aerial vehicles with disturbance accommodation | |
Thomas et al. | Collaborative control in a flying-boom aerial refueling simulation | |
Safwat et al. | Robustness analysis of modified incremental nonlinear dynamic inversion for small UAVs | |
Safwat et al. | Robust Nonlinear Flight Controller For Small Unmanned Aircraft Vehicle based on Incremental BackStepping | |
Liu et al. | Trajectory stabilization control for aerial recovery of cable-drogue-UAV assembly | |
CN107450313B (en) | Unmanned aerial vehicle autopilot control system based on self-adaptive control | |
Cao et al. | Robust flight control design using sensor-based backstepping control for unmanned aerial vehicles | |
Patrikar et al. | Nested saturation based guidance law for unmanned aerial vehicles | |
Krishna et al. | Robust geometric trajectory tracking control of a variable-pitch quadrotor | |
Safwat et al. | Generic UAV autopilot prototype based on adaptive modified incremental backstepping |