Referring to the optimal tracking guidance of aircraft, the conventional time based kinematics model is transformed into a downrange based model by independent variable replacement. The deviations of in-flight altitude and flight path angle are penalized and corrected to achieve high precision tracking of reference trajectory. The tracking problem is solved as a linear quadratic regulator applying small perturbation theory, and the approximate dynamic programming method is used to cope with the solving of finite-horizon optimization. An actor-critic structure is established to approximate the optimal tracking controller and minimum cost function. The least squares method and Adam optimization algorithm are adopted to learn the parameters of...
The actual air traffic system, based on way points, airways and procedures, is evolving to a new pa...
An optimal explicit guidance law that maximizes terminal velocity is developed for a reentry vehicle...
Low-altitude windshear is a threat to the safety of aircraft in take-off and landing: over the past ...
Research on unmanned aircraft is improving constantly the autonomous flight capabilities of these ve...
This work describes and applies the recently introduced, general-purpose perturbative guidance terme...
© 2013 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
In order to improve the autonomy of gliding guidance for complex flight missions, this paper propose...
This paper deals with the development of guidance, navigation and control algorithms for a prototype...
In this paper, single- and multi-objective three-dimensional terrain- and threat-based trajectory pl...
A method for solving finite-horizon optimal control of nonlinear systems has been developed in this ...
International audienceIn this communication is considered the problem of on line generation of minim...
This paper addresses the problem of energy-optimal waypoint-following guidance for an Unmanned Aeria...
In this communication is considered the problem of on line generation of minimum time trajectories t...
This paper focuses on the application of model predictive control (MPC) for the spacecraft trajector...
Abstract—We study the problem of optimally coordinating multiple fixed-wing UAVs to perform vision-b...
The actual air traffic system, based on way points, airways and procedures, is evolving to a new pa...
An optimal explicit guidance law that maximizes terminal velocity is developed for a reentry vehicle...
Low-altitude windshear is a threat to the safety of aircraft in take-off and landing: over the past ...
Research on unmanned aircraft is improving constantly the autonomous flight capabilities of these ve...
This work describes and applies the recently introduced, general-purpose perturbative guidance terme...
© 2013 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
In order to improve the autonomy of gliding guidance for complex flight missions, this paper propose...
This paper deals with the development of guidance, navigation and control algorithms for a prototype...
In this paper, single- and multi-objective three-dimensional terrain- and threat-based trajectory pl...
A method for solving finite-horizon optimal control of nonlinear systems has been developed in this ...
International audienceIn this communication is considered the problem of on line generation of minim...
This paper addresses the problem of energy-optimal waypoint-following guidance for an Unmanned Aeria...
In this communication is considered the problem of on line generation of minimum time trajectories t...
This paper focuses on the application of model predictive control (MPC) for the spacecraft trajector...
Abstract—We study the problem of optimally coordinating multiple fixed-wing UAVs to perform vision-b...
The actual air traffic system, based on way points, airways and procedures, is evolving to a new pa...
An optimal explicit guidance law that maximizes terminal velocity is developed for a reentry vehicle...
Low-altitude windshear is a threat to the safety of aircraft in take-off and landing: over the past ...