A deorbiting strategy for small satellites is proposed that exploits the effect of solar radiation pressure to increase the spacecraft orbit eccentricity so that the perigee falls below an altitude where atmospheric drag will cause the spacecraft orbit to naturally decay. This is achieved by fitting the spacecraft with an inflatable reflective balloon. Once this is fully deployed, the overall area-to-mass ratio of the spacecraft is increased; hence, solar radiation pressure and aerodynamic drag have a greatly increased effect on the spacecraft orbit. An analytical model of the orbit evolution due to solar radiation pressure and the J2 effect as a Hamiltonian system show the evolution of an initially circular orbit. The maximum reachable orb...
Abstract: The efficient mechanism to deorbit a small satellite from low-earth orbits highe...
The increase of space debris in the past decades has boosted the need of end-of-life disposal device...
This paper investigates the effect of planetary oblateness and solar radiation pressure on the orbit...
A deorbiting strategy for small satellites is proposed that exploits the effect of solar radiation p...
A deorbiting strategy for small satellites is proposed that exploits the effect of solar radiation p...
A deorbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the e...
A de-orbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the ...
This paper discusses the use of solar radiation pressure (SRP) augmented deorbiting to passively rem...
A de-orbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the ...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
"First online: 07 June 2016"The aim of the present research is to study the use of solar radiation p...
Abstract: The efficient mechanism to deorbit a small satellite from low-earth orbits highe...
The increase of space debris in the past decades has boosted the need of end-of-life disposal device...
This paper investigates the effect of planetary oblateness and solar radiation pressure on the orbit...
A deorbiting strategy for small satellites is proposed that exploits the effect of solar radiation p...
A deorbiting strategy for small satellites is proposed that exploits the effect of solar radiation p...
A deorbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the e...
A de-orbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the ...
This paper discusses the use of solar radiation pressure (SRP) augmented deorbiting to passively rem...
A de-orbiting strategy for small satellites, in particular CubeSats, is proposed which exploits the ...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
The growing population of space debris poses a serious risk to the future of space flight. To effect...
"First online: 07 June 2016"The aim of the present research is to study the use of solar radiation p...
Abstract: The efficient mechanism to deorbit a small satellite from low-earth orbits highe...
The increase of space debris in the past decades has boosted the need of end-of-life disposal device...
This paper investigates the effect of planetary oblateness and solar radiation pressure on the orbit...