This paper is devoted to the analysis of aircraft dynamics in the cruise flight phase under windshear conditions. The study is conducted with reference to a point-mass aircraft model restricted to move in a vertical plane. We formulate the problem as a differential game against the wind disturbances: The first player, autopilot, manages, via additional smoothing filters, the aircraft’s angle of attack and power setting. The second player, wind, produces disturbances that are transferred, also via smoothing filters, into most dangerous wind gusts. The state variables of the game are subject to state constraints representing aircraft safety conditions related, for example, to the altitude, path inclination and velocity. Viability theory is us...
grantor: University of TorontoThis research was conducted to numerically investigate the e...
Currently, quite accurate measurements of atmospheric gusts are carried out by airport systems only ...
Large amplitude flow disturbances and gusts can drastically alter the aerodynamic forces on airfoils...
We analyze both theoretically and numerically the problem of abort landing in the presence of windsh...
This thesis is concerned with the optimal flight trajectories in the presence of a three-dimensional...
Low-altitude windshear is a threat to the safety of aircraft in take-off and landing: over the past ...
This thesis refers to windshear recovery systems, designed to increase the survival capability of an...
The project simulates dynamics of an aircraft subjected to an external environment that has a direct...
. Optimal abort landing trajectories of an aircraft under different windshear-downburst situations a...
The application of the sequential gradient-restoration algorithm (SGRA) to the estimation of the win...
In this paper, single- and multi-objective three-dimensional terrain- and threat-based trajectory pl...
Autonomous contingency management systems, such as a forced landing system which reacts appropriatel...
To achieve a high conversion efficiency and at the same time robust control of a pumping kite power ...
This paper will analyze the Gust Load Alleviation (GLA) systems which can be used to reduce the effe...
Growing concerns over the scalability of air traffic operations, air transportation fuel emissions a...
grantor: University of TorontoThis research was conducted to numerically investigate the e...
Currently, quite accurate measurements of atmospheric gusts are carried out by airport systems only ...
Large amplitude flow disturbances and gusts can drastically alter the aerodynamic forces on airfoils...
We analyze both theoretically and numerically the problem of abort landing in the presence of windsh...
This thesis is concerned with the optimal flight trajectories in the presence of a three-dimensional...
Low-altitude windshear is a threat to the safety of aircraft in take-off and landing: over the past ...
This thesis refers to windshear recovery systems, designed to increase the survival capability of an...
The project simulates dynamics of an aircraft subjected to an external environment that has a direct...
. Optimal abort landing trajectories of an aircraft under different windshear-downburst situations a...
The application of the sequential gradient-restoration algorithm (SGRA) to the estimation of the win...
In this paper, single- and multi-objective three-dimensional terrain- and threat-based trajectory pl...
Autonomous contingency management systems, such as a forced landing system which reacts appropriatel...
To achieve a high conversion efficiency and at the same time robust control of a pumping kite power ...
This paper will analyze the Gust Load Alleviation (GLA) systems which can be used to reduce the effe...
Growing concerns over the scalability of air traffic operations, air transportation fuel emissions a...
grantor: University of TorontoThis research was conducted to numerically investigate the e...
Currently, quite accurate measurements of atmospheric gusts are carried out by airport systems only ...
Large amplitude flow disturbances and gusts can drastically alter the aerodynamic forces on airfoils...