Optimal feedback control is classically based on linear approximations, whose accuracy drops off rapidly in highly nonlinear dynamics. Several nonlinear optimal feedback control strategies have appeared in recent years. Among them, differential algebraic techniques have been used to tackle nonlinearities by expanding the solution of the optimal control problem about a reference trajectory and reducing the computation of optimal feedback control laws to the evaluation of high order polynomials. However, the resulting high order method could not handle control saturation constraints, which remain a critical facet of nonlinear optimal feedback control. This work introduces the management of saturating actuators in the differential algebraic me...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76084/1/AIAA-2006-6234-808.pd
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
A high order optimal control strategy is proposed in this work, based on the use of differential alg...
A high order optimal control strategy is proposed in this work, based on the use of differential alg...
The optimal feedback control problem for low-thrust trajectories with modulated inverse-square-dista...
The feedback optimal control problem in low-thrust trajectories with variable radial thrust is studi...
Space trajectory design always requires the solution of an optimal control problem in order to maxi...
In Part I, a method is developed for determining the optimal control laws for a class of aerodynamic...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76084/1/AIAA-2006-6234-808.pd
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
A high order optimal control strategy is proposed in this work, based on the use of differential alg...
A high order optimal control strategy is proposed in this work, based on the use of differential alg...
The optimal feedback control problem for low-thrust trajectories with modulated inverse-square-dista...
The feedback optimal control problem in low-thrust trajectories with variable radial thrust is studi...
Space trajectory design always requires the solution of an optimal control problem in order to maxi...
In Part I, a method is developed for determining the optimal control laws for a class of aerodynamic...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76084/1/AIAA-2006-6234-808.pd
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...
Continuous-thrust orbit transfers are designed by solving an optimal control problem that minimizes ...