Several missions have utilised halo orbits around the L1 and L2 previous termLagrangenext term points of the Earth-Sun system. Due to the instability of these orbits, station-keeping techniques are required to prevent escape after orbit insertion. This paper considers using solar sail propulsion to provide station-keeping at quasi-periodic orbits around L1 and L2. Stable manifolds will be identified which provide near-Earth insertion to a quasi-periodic trajectory around the libration point. The possible control techniques investigated include solar sail area variation and solar sail pitch and yaw angle variation. Hill's equations are used to model the dynamics of the problem and optimal control laws are developed to minimise the control re...
Solar sail technology offers new capabilities for the analysis and design of space missions. This ne...
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
In this paper we consider issues regarding the control and orbit transfer of solar sails in the circ...
Several missions have utilised halo orbits around the L1 and L2 previous termLagrangenext term point...
Several missions have utilised halo orbits around the L1 and L2 Lagrange points of the Earth-Sun sys...
In this Note we consider using solar sail propulsion to stabilize a spacecraft about an artificial l...
In this Note a new family of solar sail orbits will be investigated in the sun-Earth circular restri...
Non-Keplerian trajectories around the Lagrange points of the three-body problem have been thoroughly...
Solar sailing has been proposed for a range of novel space applications, including hovering above th...
Solar sailing has been proposed for a range of novel space applications, including hovering above th...
We consider displaced periodic orbits at linear order in the circular restricted Earth-Moon system, ...
We consider displaced periodic orbits at linear order in the circular restricted Earth-Moon system, ...
This paper presents families of libration point orbits in the Earth-Moon system that originate from ...
This paper proposes two novel solar sail concepts for space weather forecasting: heliocentric Earth-...
Solar sail technology offers new capabilities for the analysis and design of space missions. This ne...
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
In this paper we consider issues regarding the control and orbit transfer of solar sails in the circ...
Several missions have utilised halo orbits around the L1 and L2 previous termLagrangenext term point...
Several missions have utilised halo orbits around the L1 and L2 Lagrange points of the Earth-Sun sys...
In this Note we consider using solar sail propulsion to stabilize a spacecraft about an artificial l...
In this Note a new family of solar sail orbits will be investigated in the sun-Earth circular restri...
Non-Keplerian trajectories around the Lagrange points of the three-body problem have been thoroughly...
Solar sailing has been proposed for a range of novel space applications, including hovering above th...
Solar sailing has been proposed for a range of novel space applications, including hovering above th...
We consider displaced periodic orbits at linear order in the circular restricted Earth-Moon system, ...
We consider displaced periodic orbits at linear order in the circular restricted Earth-Moon system, ...
This paper presents families of libration point orbits in the Earth-Moon system that originate from ...
This paper proposes two novel solar sail concepts for space weather forecasting: heliocentric Earth-...
Solar sail technology offers new capabilities for the analysis and design of space missions. This ne...
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
In this paper we consider issues regarding the control and orbit transfer of solar sails in the circ...