most citedThe Benefits of Very Low Earth Orbit for Earth Observation Missions

253 citations · 448 across the 5 of their papers we have counts for

collaborators
Showing physics.space-phShow all

5 papers · 1 filter

physics.space-ph202220 cited

Design of an Intake and a Thruster for an Atmosphere-Breathing Electric Propulsion System

F. Romano, G. Herdrich, Y. -A. Chan +25

Challenging space missions include those at very low altitudes, where the atmosphere is source of aerodynamic drag on the spacecraft that finally defines the missions lifetime unle…

physics.space-ph202227 cited

Development and analysis of novel mission scenarios based on Atmosphere-Breathing Electric Propulsion (ABEP)

S. Vaidya, C. Traub, F. Romano +28

Operating satellites in Very Low Earth Orbit (VLEO) benefits the already expanding New Space industry in applications including Earth Observation and beyond. However, long-term ope…

physics.space-ph202057 cited

In-Orbit Aerodynamic Coefficient Measurements using SOAR (Satellite for Orbital Aerodynamics Research)

N. H. Crisp, P. C. E. Roberts, S. Livadiotti +26

The Satellite for Orbital Aerodynamics Research (SOAR) is a CubeSat mission, due to be launched in 2021, to investigate the interaction between different materials and the atmosphe…

physics.space-ph202091 cited

A Review of Gas-Surface Interaction Models for Orbital Aerodynamics Applications

Sabrina Livadiotti, Nicholas H. Crisp, Peter C. E. Roberts +29

Renewed interest in Very Low Earth Orbits (VLEO) - i.e. altitudes below 450 km - has led to an increased demand for accurate environment characterisation and aerodynamic force pred…

physics.space-ph2020253 cited

The Benefits of Very Low Earth Orbit for Earth Observation Missions

N. H. Crisp, P. C. E. Roberts, S. Livadiotti +30

Very low Earth orbits (VLEO), typically classified as orbits below approximately 450 km in altitude, have the potential to provide significant benefits to spacecraft over those tha…