To expand mission capabilities that are required for exploration of the solar system, methodologies to design optimal low-thrust trajectories must be developed. However, low-thrust, multiple gravity-assist trajectories pose significant optimization challenges because of their expansive, multimodal design space. In this work, a technique is developed for global, low-thrust, interplanetary trajectory optimization through the hybridization of a genetic algorithm and a gradient-based direct method (GALLOP). The hybrid algorithm combines the effective global search capabilities of a genetic algorithm with the robust convergence and constraint handling of the local, calculus-based direct method. The automated approach alleviates the difficulty an...
A hybrid evolutionary algorithm which synergistically exploits differential evolution, genetic algor...
A tool developed for the preliminary design of low-thrust trajectories is described. The trajectory ...
The multi-objective optimal design of low-thrust multigravity-assist trajectories is formulated with...
Optimization of low thrust Earth transference orbits suppose a great mathematical and computational...
Genetic algorithms have gained popularity as an effective procedure for obtaining solutions to tradi...
ABSTRACT: For a given set of celestial bodies, the problem of finding an optimal sequence of gravity...
A genetic algorithm is used together with calculus of variations to optimize an interplanetary traje...
This paper discusses the creation of a genetic algorithm to locate and optimize interplanetary traje...
The design of interplanetary trajectories requires the solution of an optimization problem typically...
Further exploring our solar system is continuously becoming more challenging, thus gravity-assists a...
Abstract — Genetic algorithms have gained popularity as effective search procedures for obtaining so...
The problem of optimal design of a multi-gravity-assist space trajectory, with a free number of deep...
The development of new mission concepts requires efficient methodologies to analyze, de-sign, and si...
Many space mission planning problems may be formulated as hybrid optimal control problems (HOCP), i....
Optimization of spacecraft trajectories is an interesting area of research, where a lot of developme...
A hybrid evolutionary algorithm which synergistically exploits differential evolution, genetic algor...
A tool developed for the preliminary design of low-thrust trajectories is described. The trajectory ...
The multi-objective optimal design of low-thrust multigravity-assist trajectories is formulated with...
Optimization of low thrust Earth transference orbits suppose a great mathematical and computational...
Genetic algorithms have gained popularity as an effective procedure for obtaining solutions to tradi...
ABSTRACT: For a given set of celestial bodies, the problem of finding an optimal sequence of gravity...
A genetic algorithm is used together with calculus of variations to optimize an interplanetary traje...
This paper discusses the creation of a genetic algorithm to locate and optimize interplanetary traje...
The design of interplanetary trajectories requires the solution of an optimization problem typically...
Further exploring our solar system is continuously becoming more challenging, thus gravity-assists a...
Abstract — Genetic algorithms have gained popularity as effective search procedures for obtaining so...
The problem of optimal design of a multi-gravity-assist space trajectory, with a free number of deep...
The development of new mission concepts requires efficient methodologies to analyze, de-sign, and si...
Many space mission planning problems may be formulated as hybrid optimal control problems (HOCP), i....
Optimization of spacecraft trajectories is an interesting area of research, where a lot of developme...
A hybrid evolutionary algorithm which synergistically exploits differential evolution, genetic algor...
A tool developed for the preliminary design of low-thrust trajectories is described. The trajectory ...
The multi-objective optimal design of low-thrust multigravity-assist trajectories is formulated with...