While SRP is often considered an undesirable effect, especially for missions to small bodies like asteroids and binary asteroid systems, this paper utilizes the SRP on a solar sail to generate artificial equilibrium points (AEPs) and displaced periodic orbits in these systems. While the solar sail dynamics for the single asteroid case are described using the Hill + SRP problem, those for the binary system are either described in the Hill four-body + SRP problem or the full bicircular + SRP problem. The results for the single asteroid case include solar sail acceleration contours to remain stationary with respect to the asteroid on either the Sun-lit or dark side of the asteroid and either in or above its orbital plane. Using a combination o...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth-M...
Solar sailing is an innovative space propulsion system based solely on the exchange of momentum betw...
In this Note a new family of solar sail orbits will be investigated in the sun-Earth circular restri...
While SRP is often considered an undesirable effect, especially for missions to small bodies like as...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77377/1/AIAA-2000-4420-378.pd
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77005/1/AIAA-2002-4991-208.pd
This paper continues the work of previous studies which examined solar sail dynamics about an aster-...
A major cause of spacecraft orbital variation comes from natural perturbations, which, in close prox...
In this paper we focus on a mission scenario of a solar sail close to an asteroid. We consider the A...
The design of spacecraft trajectories is a crucial task in space mission design. Solar sail technolo...
A study offers a catalog on solar-sail quasi-periodic orbits that can be directly used for mission d...
Solar-sail propulsion to generate families of displaced periodic orbits at planetary bodies is consi...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth-M...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth–M...
This paper presents families of libration point orbits in the Earth-Moon system that originate from ...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth-M...
Solar sailing is an innovative space propulsion system based solely on the exchange of momentum betw...
In this Note a new family of solar sail orbits will be investigated in the sun-Earth circular restri...
While SRP is often considered an undesirable effect, especially for missions to small bodies like as...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77377/1/AIAA-2000-4420-378.pd
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77005/1/AIAA-2002-4991-208.pd
This paper continues the work of previous studies which examined solar sail dynamics about an aster-...
A major cause of spacecraft orbital variation comes from natural perturbations, which, in close prox...
In this paper we focus on a mission scenario of a solar sail close to an asteroid. We consider the A...
The design of spacecraft trajectories is a crucial task in space mission design. Solar sail technolo...
A study offers a catalog on solar-sail quasi-periodic orbits that can be directly used for mission d...
Solar-sail propulsion to generate families of displaced periodic orbits at planetary bodies is consi...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth-M...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth–M...
This paper presents families of libration point orbits in the Earth-Moon system that originate from ...
This paper investigates displaced periodic orbits at linear order in the circular restricted Earth-M...
Solar sailing is an innovative space propulsion system based solely on the exchange of momentum betw...
In this Note a new family of solar sail orbits will be investigated in the sun-Earth circular restri...