This paper presents a variable hierarchy six degree of freedom non-linear sliding mode controller for a satellite using potential function guidance for both position and attitude. The novelty is the formulation of the joint attitude/position sliding mode controller in combination with potential function guidance and proof of its asymptotic stability. The control method scales well to multiple satellites flying in formation with dynamic position and attitude requirements and as such is highly relevant to application in space systems such as interferometry. A target application of the acquisition and maintenance of a Halo type orbit about an unstable collinear Lagrange point, to a specified attitude, is obtained under the influence of the res...
In this paper, the Multiple Sliding Surface Guidance (MSSG) algorithm has been implemented and simul...
In this paper we present the design of a sliding mode controller for attitude control of spacecraft ...
Propulsion, path planning and control of satellite formations in Geostationary Earth Orbits (GEO) an...
This paper presents the application of two separate discrete time sliding mode controllers, develope...
peer reviewedThe focus of this study is on the development of a robust controller with a simple gain...
This paper presents the design of a higher-order sliding-mode control system for the three-axis atti...
In order to deal with the low convergence rate of the standard sliding mode in satellite attitude co...
The robust optimal attitude control problem for a flexible spacecraft is considered. Two optimal sli...
Recent advances in small, low cost satellite technology has generated a renewed interest in formatio...
This paper studies optimal sliding mode controller designs using integral sliding mode control (ISM)...
Precision Formation Flying is an enabling technology for a variety of proposed space-based observato...
A design of a robust attitude control system for flexible spacecraft is proposed in this paper, sinc...
Close-proximity (10-150 m) formation flying using low cost, small satellites is an emerging field. I...
Close-proximity (10-150 m) formation flying using low cost, small satellites is an emerging field. I...
An Optimal Sliding Guidance (OSG) is implemented in the Circular Restricted Three-Body Problem and R...
In this paper, the Multiple Sliding Surface Guidance (MSSG) algorithm has been implemented and simul...
In this paper we present the design of a sliding mode controller for attitude control of spacecraft ...
Propulsion, path planning and control of satellite formations in Geostationary Earth Orbits (GEO) an...
This paper presents the application of two separate discrete time sliding mode controllers, develope...
peer reviewedThe focus of this study is on the development of a robust controller with a simple gain...
This paper presents the design of a higher-order sliding-mode control system for the three-axis atti...
In order to deal with the low convergence rate of the standard sliding mode in satellite attitude co...
The robust optimal attitude control problem for a flexible spacecraft is considered. Two optimal sli...
Recent advances in small, low cost satellite technology has generated a renewed interest in formatio...
This paper studies optimal sliding mode controller designs using integral sliding mode control (ISM)...
Precision Formation Flying is an enabling technology for a variety of proposed space-based observato...
A design of a robust attitude control system for flexible spacecraft is proposed in this paper, sinc...
Close-proximity (10-150 m) formation flying using low cost, small satellites is an emerging field. I...
Close-proximity (10-150 m) formation flying using low cost, small satellites is an emerging field. I...
An Optimal Sliding Guidance (OSG) is implemented in the Circular Restricted Three-Body Problem and R...
In this paper, the Multiple Sliding Surface Guidance (MSSG) algorithm has been implemented and simul...
In this paper we present the design of a sliding mode controller for attitude control of spacecraft ...
Propulsion, path planning and control of satellite formations in Geostationary Earth Orbits (GEO) an...