This paper presents an adaptive incremental nonlinear backstepping sliding-mode (INBSM) controller, for fault tolerant tracking control of a blended wing body (BWB) aircraft with unknown disturbances and actuator faults. The INBSM controller is based on a nonlinear dynamics model of the BWB aircraft. In addition, a radial basis function neural network disturbance observer (RBF-NNDO) is proposed to enhance the disturbance attenuation ability. A fault estimator is suggested to improve actuator fault tolerant control level. The closed-loop control system of the BWB aircraft is proved to be globally asymptotically stable using Lyapunov theory. Simulations of the combined NNDO-INBSM controller are presented and compared with both the INBSM desig...
The main purpose of this paper is to develop an onboard adaptive and robust flight control system th...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...
Presence of uncertainties caused by unforeseen malfunctions in actuation system or changes in aircra...
Fault-tolerant flight control has the potential of improving the aircraft survivability in real life...
This paper presents an adaptive backstepping neural controller design for aircraft under control sur...
The presence of uncertainties caused by unforeseen malfunctions in the actuation system or changes i...
Copyright © 2014 Institution of Engineering and Technology (IET)This study proposes a novel non-line...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
This report presents an adaptive back-stepping neural controller for reconfigurable flight control o...
In this paper, the fault tolerant capabilities of the neural aided sliding mode controller for autol...
This paper presents the design and implementation of incremental backstepping (IBS) flight control l...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
The main purpose of this paper is to develop an onboard adaptive and robust flight control system th...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
The main purpose of this paper is to develop an onboard adaptive and robust flight control system th...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...
Presence of uncertainties caused by unforeseen malfunctions in actuation system or changes in aircra...
Fault-tolerant flight control has the potential of improving the aircraft survivability in real life...
This paper presents an adaptive backstepping neural controller design for aircraft under control sur...
The presence of uncertainties caused by unforeseen malfunctions in the actuation system or changes i...
Copyright © 2014 Institution of Engineering and Technology (IET)This study proposes a novel non-line...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
This report presents an adaptive back-stepping neural controller for reconfigurable flight control o...
In this paper, the fault tolerant capabilities of the neural aided sliding mode controller for autol...
This paper presents the design and implementation of incremental backstepping (IBS) flight control l...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
The main purpose of this paper is to develop an onboard adaptive and robust flight control system th...
Recently, an incremental type sensor based backstepping (SBB) control approach, based on singular pe...
The main purpose of this paper is to develop an onboard adaptive and robust flight control system th...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...
This paper deals with aircraft trajectory control in the presence of model uncertainties and actuato...