Robotic rehabilitation of the lower limb exoskeleton following neurological injury has proven to be an effective rehabilitation technique. Developing assistive control strategies that achieve rehabilitative movements can increase the potential for the recovery of the motor coordination of the participants. In this paper, the innovative contributions are to investigate a robust sliding mode controller (SMC) with radials basis function neural network algorithm (RBFNN) compensator for a novel compliance tendon–sheath actuation lower limb exoskeleton (CLLE) to provide intrinsic thigh and shank rehabilitation training. The controller employing the RBFNN compensator is proposed to reduce the impact of friction from the compliance tendon–sheath ac...
This paper presents Artificial Neural Network (ANN) as an optimization tool in tuning Proportional-I...
The Sliding Mode Controllers (SMCs) are considered among the most common stabilizer and controllers ...
ABSTRACT: An interesting alternative to electric actuators for medical purposes, particularly promis...
International audienceThis paper deals with the rehabilitation purposes using an active orthosis dri...
Rehabilitation in the form of locomotion assistance and gait training through robotic exoskeletons r...
A lower limb assistive exoskeleton is designed to help operators walk or carry payloads. The exoskel...
International audienceA robust neural adaptive integral sliding mode control approach is proposed in...
The research on rehabilitation robots is gradually moving toward combining human intention recogniti...
International audienceThis paper presents an adaptive control approach of an actuated orthosis for t...
Introduction: The lower limb exoskeleton rehabilitation robot should perform gait planning based on ...
This paper presents neural learning based adaptive impedance control for a lower limb rehabilitation...
Abstract—The soft robotics approach is widely considered to enable robots in the near future to leav...
In this paper, an adaptive neural network approach is developed based on the integral nonsingular te...
This paper presents a radial basis function (RBF) neural network control scheme for manipulators wit...
A significant challenge for the control of a robotic lower extremity rehabilitation exoskeleton is t...
This paper presents Artificial Neural Network (ANN) as an optimization tool in tuning Proportional-I...
The Sliding Mode Controllers (SMCs) are considered among the most common stabilizer and controllers ...
ABSTRACT: An interesting alternative to electric actuators for medical purposes, particularly promis...
International audienceThis paper deals with the rehabilitation purposes using an active orthosis dri...
Rehabilitation in the form of locomotion assistance and gait training through robotic exoskeletons r...
A lower limb assistive exoskeleton is designed to help operators walk or carry payloads. The exoskel...
International audienceA robust neural adaptive integral sliding mode control approach is proposed in...
The research on rehabilitation robots is gradually moving toward combining human intention recogniti...
International audienceThis paper presents an adaptive control approach of an actuated orthosis for t...
Introduction: The lower limb exoskeleton rehabilitation robot should perform gait planning based on ...
This paper presents neural learning based adaptive impedance control for a lower limb rehabilitation...
Abstract—The soft robotics approach is widely considered to enable robots in the near future to leav...
In this paper, an adaptive neural network approach is developed based on the integral nonsingular te...
This paper presents a radial basis function (RBF) neural network control scheme for manipulators wit...
A significant challenge for the control of a robotic lower extremity rehabilitation exoskeleton is t...
This paper presents Artificial Neural Network (ANN) as an optimization tool in tuning Proportional-I...
The Sliding Mode Controllers (SMCs) are considered among the most common stabilizer and controllers ...
ABSTRACT: An interesting alternative to electric actuators for medical purposes, particularly promis...