A high order optimal control strategy is proposed in this work, based on the use of differential algebraic techniques. In the frame of orbital mechanics, differential algebra allows to represent, by high order Taylor polynomials, the dependency of the spacecraft state on initial conditions and environmental parameters. The resulting polynomials can be manipulated to obtain the high order expansion of the solution of two-point boundary value problems. Since the optimal control problem can be reduced to a two-point boundary value problem, differential algebra is used to compute the high order expansion of the solution of the optimal control problem about a reference trajectory. Whenever perturbations in the nominal conditions occur, new optim...
A new algorithm based on differential algebra is proposed to obtain a high-order Taylor expansion of...
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 ...
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...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Space trajectory design always requires the solution of an optimal control problem in order to maxim...
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...
Space situational awareness program, for both NEO and debris segments, have to face the challenging ...
Two-point boundary value problems appear frequently in space trajectory design. A remarkable example...
A new algorithm based on differential algebra is proposed to obtain a high-order Taylor expansion of...
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 ...
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...
Optimal feedback control is classically based on linear approximations, whose accuracy drops off rap...
Space trajectory design always requires the solution of an optimal control problem in order to maxim...
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...
Space situational awareness program, for both NEO and debris segments, have to face the challenging ...
Two-point boundary value problems appear frequently in space trajectory design. A remarkable example...
A new algorithm based on differential algebra is proposed to obtain a high-order Taylor expansion of...
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 ...