AbstractModeling and attitude control methods for a satellite with a large deployable antenna are studied in the present paper. Firstly, for reducing the model dimension, three dynamic models for the deploying process are developed, which are built with the methods of multi-rigid-body dynamics, hybrid coordinate and substructure. Then an attitude control method suitable for the deploying process is proposed, which can keep stability under any dynamical parameter variation. Subsequently, this attitude control is optimized to minimize attitude disturbance during the deploying process. The simulation results show that this attitude control method can keep stability and maintain proper attitude variation during the deploying process, which indi...
The need to model very complex spacecraft has induced many researchers to develop different methodol...
This paper proposes a nonlinear control method for carrying out Minimum-time satellite attitude mane...
Continuous improvements in computational and computing sciences allow to develop more and more effic...
AbstractModeling and attitude control methods for a satellite with a large deployable antenna are st...
Modeling and attitude control methods for a satellite with a large deployable antenna are studied in...
Maxwell is a student built CubeSat scheduled for launch in 2021. The satellite is being designed to ...
Control systems synthesis is considered for controlling the rigid body attitude and elastic motion o...
The design of large space structures (LSS) requires the use of design and analysis tools that includ...
AbstractThe primary sensor of astronomy observation satellite (AOS) is mounted on a gimbal base whic...
Attitude dynamics and thrust control for short tethered sub-satellite in deployment Yingying Liu and...
Many satellites include flexible deploy-able appendages and structures as a method of increasing mis...
A satellite is designed to have a certain orientation with respect to the earth. The satellite keeps...
One of the most important problem in satellite design is that of attitude stabilization and control...
Rigid-flexible satellites are aerospace systems with flexible parts attached to their structures, su...
During the last decades, large deployable structures are starting to be seen as a plausible configur...
The need to model very complex spacecraft has induced many researchers to develop different methodol...
This paper proposes a nonlinear control method for carrying out Minimum-time satellite attitude mane...
Continuous improvements in computational and computing sciences allow to develop more and more effic...
AbstractModeling and attitude control methods for a satellite with a large deployable antenna are st...
Modeling and attitude control methods for a satellite with a large deployable antenna are studied in...
Maxwell is a student built CubeSat scheduled for launch in 2021. The satellite is being designed to ...
Control systems synthesis is considered for controlling the rigid body attitude and elastic motion o...
The design of large space structures (LSS) requires the use of design and analysis tools that includ...
AbstractThe primary sensor of astronomy observation satellite (AOS) is mounted on a gimbal base whic...
Attitude dynamics and thrust control for short tethered sub-satellite in deployment Yingying Liu and...
Many satellites include flexible deploy-able appendages and structures as a method of increasing mis...
A satellite is designed to have a certain orientation with respect to the earth. The satellite keeps...
One of the most important problem in satellite design is that of attitude stabilization and control...
Rigid-flexible satellites are aerospace systems with flexible parts attached to their structures, su...
During the last decades, large deployable structures are starting to be seen as a plausible configur...
The need to model very complex spacecraft has induced many researchers to develop different methodol...
This paper proposes a nonlinear control method for carrying out Minimum-time satellite attitude mane...
Continuous improvements in computational and computing sciences allow to develop more and more effic...