The aim of this paper is to explore the capabilities of a solar electric propelled spacecraft on a mission towards circumsolar space. Using an indirect approach, the paper investigates minimum time of transfer (direct) trajectories from an initial heliocentric parking orbit to a desired final heliocentric target orbit, with a low perihelion radius and a high orbital inclination. The simulation results are then collected into graphs and tables for a trade-off analysis of the main mission parameters. Finally, a comparison of the performance between a solar electric and a (photonic) solar sail based spacecraft is discussed
Solar sailing is increasingly being considered by space agencies for future science missions. With t...
An extension of the classical method by Alfano, for the analysis of optimal circle-to-circle two-dim...
We address the heliocentric in-orbit repositioning problem of an E-sail-based spacecraft that covers...
The aim of this paper is to explore the capabilities of a solar electric propelled spacecraft on a m...
The aim of this paper is to explore the capabilities of a solar electric propelled spacecraft on a m...
The aim of this paper is to analyze optimal trajectories of a solar sail-based spacecraft in mission...
The aim of this paper is to evaluate the minimum flight time of a solar sail-based spacecraft toward...
The aim of this paper is to investigate the performance of a robotic spacecraft, whose primary propu...
Missions towards the Solar System boundaries are of great scientific interest and represent a hard t...
The aim of this paper is to characterize a mission toward a heliocentric linear trajectory (that is,...
This paper analyzes the locally-optimal heliocentric transfer of a spacecraft propelled by an Electr...
The aim of this work is to investigate heliocentric phasing maneuvers performed by a spacecraft prop...
The Electric Solar Wind Sail is an advanced propulsion system concept that, similar to the more conv...
The aim of this work is to investigate heliocentric phasing maneuvers performed by a spacecraft prop...
We investigate the heliocentric in-orbit repositioning problem of a spacecraft propelled by an Elect...
Solar sailing is increasingly being considered by space agencies for future science missions. With t...
An extension of the classical method by Alfano, for the analysis of optimal circle-to-circle two-dim...
We address the heliocentric in-orbit repositioning problem of an E-sail-based spacecraft that covers...
The aim of this paper is to explore the capabilities of a solar electric propelled spacecraft on a m...
The aim of this paper is to explore the capabilities of a solar electric propelled spacecraft on a m...
The aim of this paper is to analyze optimal trajectories of a solar sail-based spacecraft in mission...
The aim of this paper is to evaluate the minimum flight time of a solar sail-based spacecraft toward...
The aim of this paper is to investigate the performance of a robotic spacecraft, whose primary propu...
Missions towards the Solar System boundaries are of great scientific interest and represent a hard t...
The aim of this paper is to characterize a mission toward a heliocentric linear trajectory (that is,...
This paper analyzes the locally-optimal heliocentric transfer of a spacecraft propelled by an Electr...
The aim of this work is to investigate heliocentric phasing maneuvers performed by a spacecraft prop...
The Electric Solar Wind Sail is an advanced propulsion system concept that, similar to the more conv...
The aim of this work is to investigate heliocentric phasing maneuvers performed by a spacecraft prop...
We investigate the heliocentric in-orbit repositioning problem of a spacecraft propelled by an Elect...
Solar sailing is increasingly being considered by space agencies for future science missions. With t...
An extension of the classical method by Alfano, for the analysis of optimal circle-to-circle two-dim...
We address the heliocentric in-orbit repositioning problem of an E-sail-based spacecraft that covers...