The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When changing the reflectivity across the sail film, solar radiation pressure forces and torques can be controlled without changing the attitude of the spacecraft relative to the Sun or using attitude control actuators. The reflectivity can in principle be modified using electro-chromic coatings, which are applied here as examples to counteract gravity-gradient torques in Earth orbit and to enable specific shape profiles of a flexible sail film. This ‘optical reconfiguration’ method introduces an adaptive solar sail as a multi-functional platform for novel mission applications
The objective of this thesis is to evaluate the impact that wrinkles have on the stability and contr...
Centimeter-scale spacecraft, known as ”Chipsats,” have very high surface-area-to-mass ratios, which ...
This work investigates the orbital and attitude dynamics of future reconfigurable multi-panel solar ...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
The dynamics of solar sails with a variable surface re ectivity distribution are inves- tigated. W...
The dynamics of solar sails with a variable surface re ectivity distribution are inves- tigated. W...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
In order to increase the range of potential mission applications of solar sail technology, this pape...
In order to increase the range of potential mission applications of solar sail technology, this pape...
Solar sails are spacecraft that utilise the Solar Radiation Pressure, the force generated by impingi...
Solar sails are spacecraft that utilise the Solar Radiation Pressure, the force generated by impingi...
OrigamiSats, a new concept in solar sailing, are origami spacecraft with reflective panels that, whe...
The optimization of a solar sail-based orbital transfer amounts to searching for the control law tha...
The static deflection profile of a large spin-stabilised space reflector due to solar radiation pres...
The objective of this thesis is to evaluate the impact that wrinkles have on the stability and contr...
Centimeter-scale spacecraft, known as ”Chipsats,” have very high surface-area-to-mass ratios, which ...
This work investigates the orbital and attitude dynamics of future reconfigurable multi-panel solar ...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
The dynamics of solar sails with a variable surface re ectivity distribution are inves- tigated. W...
The dynamics of solar sails with a variable surface re ectivity distribution are inves- tigated. W...
The dynamics of solar sails with a variable surface reflectivity distribution are investigated. When...
In order to increase the range of potential mission applications of solar sail technology, this pape...
In order to increase the range of potential mission applications of solar sail technology, this pape...
Solar sails are spacecraft that utilise the Solar Radiation Pressure, the force generated by impingi...
Solar sails are spacecraft that utilise the Solar Radiation Pressure, the force generated by impingi...
OrigamiSats, a new concept in solar sailing, are origami spacecraft with reflective panels that, whe...
The optimization of a solar sail-based orbital transfer amounts to searching for the control law tha...
The static deflection profile of a large spin-stabilised space reflector due to solar radiation pres...
The objective of this thesis is to evaluate the impact that wrinkles have on the stability and contr...
Centimeter-scale spacecraft, known as ”Chipsats,” have very high surface-area-to-mass ratios, which ...
This work investigates the orbital and attitude dynamics of future reconfigurable multi-panel solar ...