A hybrid nonlinear controller for spacecraft attitude and rate tracking is presented though a combination of two control techniques. Based on the augmentation of spacecraft dynamics and kinematics, a pseudo-linear formulation is derived and used for the development of the basic controller. The basic controller follows a Modified State–Dependent Riccati Equation MSDRE scheme. A neuro-fuzzy controller is designed using an Adaptive Neuro-Fuzzy Inference System ANFIS utilizing the off-line solutions of the MSDRE. The combined control scheme is applied according to large time intervals of the MSDRE solutions to obtain the optimal control torques while along each time interval the ANFIS controller provides the required control signal. The ...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper introduces a new technique to control spacecraft maneuvers. The new technique is based u...
The problem of spacecraft attitude control is solved using an adaptive neuro-fuzzy inference system ...
In recent decades, one of the scientists’ main concerns has been to improve the accuracy of satellit...
This paper presents the application of a Modified State–Dependent Riccati Equation MSDRE approach in...
A nonlinear control scheme using a Modified State-Dependent Riccati Equation (MSDRE) is developed th...
[[abstract]]This paper presents an adaptive fuzzy mixed H2/H infinity attitude control of nonlinear ...
A nonlinear adaptive approach is presented to achieve rest-to-rest attitude maneuvers for spacecraft...
A general architecture for neuro-genetic adaptive control is described and contrasted with purely ne...
The attitude control problem, or the control of a spacecraft's orientation with respect to a frame o...
Abstract:- A nonlinear control scheme using a Modified State–Dependent Riccati Equation MSDRE has be...
A model reference adaptive control method is proposed for uncertain nonlinear characteristics of spa...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper introduces a new technique to control spacecraft maneuvers. The new technique is based u...
The problem of spacecraft attitude control is solved using an adaptive neuro-fuzzy inference system ...
In recent decades, one of the scientists’ main concerns has been to improve the accuracy of satellit...
This paper presents the application of a Modified State–Dependent Riccati Equation MSDRE approach in...
A nonlinear control scheme using a Modified State-Dependent Riccati Equation (MSDRE) is developed th...
[[abstract]]This paper presents an adaptive fuzzy mixed H2/H infinity attitude control of nonlinear ...
A nonlinear adaptive approach is presented to achieve rest-to-rest attitude maneuvers for spacecraft...
A general architecture for neuro-genetic adaptive control is described and contrasted with purely ne...
The attitude control problem, or the control of a spacecraft's orientation with respect to a frame o...
Abstract:- A nonlinear control scheme using a Modified State–Dependent Riccati Equation MSDRE has be...
A model reference adaptive control method is proposed for uncertain nonlinear characteristics of spa...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...
This paper proposes the application of a nonlinear control technique for coupled orbital and attitud...