In this paper the preliminary design of multiple gravity-assist trajectories is formulated as a global optimization problem. An analysis of the structure of the solution space reveals a strong multimodality, which is strictly dependent on the complexity of the model. On the other hand it is shown how an oversimplification could prevent finding potentially interesting solutions. A trajectory model, which represents a compromise between model completeness and optimization problem complexity is then presented. The exploration of the resulting solution space is performed through a novel global search approach, which hybridizes an evolutionary based algorithm with a systematic branching strategy. This approach allows an efficient exploration of ...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
This report describes the analysis and development of novel tools for the global optimisation of rel...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
In this paper the preliminary design of multiple gravity-assist trajectories is formulated as a glob...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
We introduce and describe the Multiple Gravity Assist problem, a global optimisation problem that is...
Multiple gravity assist (MGA) trajectories represent a particular class of space trajectories in whi...
This paper presents an incremental approach to the solution of multiple gravity assist trajectories ...
We introduce and describe the Multiple Gravity Assist problem, a global optimisation problem that is...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
This report describes the analysis and development of novel tools for the global optimisation of rel...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
In this paper the preliminary design of multiple gravity-assist trajectories is formulated as a glob...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
This paper deals with the design of optimal multiple gravity assist trajectories with deep space man...
We introduce and describe the Multiple Gravity Assist problem, a global optimisation problem that is...
Multiple gravity assist (MGA) trajectories represent a particular class of space trajectories in whi...
This paper presents an incremental approach to the solution of multiple gravity assist trajectories ...
We introduce and describe the Multiple Gravity Assist problem, a global optimisation problem that is...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...
This report describes the analysis and development of novel tools for the global optimisation of rel...
Multiple gravity assist (MGA) trajectories are essential to reach high gravity targets with low prop...