This paper proposes an electromyography (EMG)-based method for online force prediction and control of a lower limb rehabilitation robot. Root mean square (RMS) features of EMG signals from four muscles of the lower limb are used as the inputs to a support vector regression (SVR) model to estimate the human-robot interaction force. The autoregressive algorithm is utilized to construct the relationship between EMG signals and the impact force. Combining the force prediction model with the position-based impedance controller, the robot can be controlled to track the desired force of the lower limb, and so as to achieve an adaptive and active rehabilitation mode, which is adaptable to the individual muscle strength and movement ability. Finally...
10.1109/ICORR.2013.6650419IEEE International Conference on Rehabilitation Robotics
Stroke is the leading cause of disability of people that influences the quality of their daily life...
EMG signals are often used to control prostheses or assistive devices, but have been rarely used in ...
Purpose – The purpose of this paper is to propose a seamless active interaction control method in...
The main objective of this work is to establish a framework for processing and evaluating the lower ...
Purpose – The purpose of this paper is to propose a seamless active interaction control method in...
Robotic devices have great potential in physical therapy owing to their repeatability, reliability a...
Although electromyography (EMG) signals and interaction force have been widely used in patient coope...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
10.1109/ICORR.2013.6650419IEEE International Conference on Rehabilitation Robotics
Stroke is the leading cause of disability of people that influences the quality of their daily life...
EMG signals are often used to control prostheses or assistive devices, but have been rarely used in ...
Purpose – The purpose of this paper is to propose a seamless active interaction control method in...
The main objective of this work is to establish a framework for processing and evaluating the lower ...
Purpose – The purpose of this paper is to propose a seamless active interaction control method in...
Robotic devices have great potential in physical therapy owing to their repeatability, reliability a...
Although electromyography (EMG) signals and interaction force have been widely used in patient coope...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
This paper proposes a sEMG-based method for on-line torque prediction and control of robot joints. M...
10.1109/ICORR.2013.6650419IEEE International Conference on Rehabilitation Robotics
Stroke is the leading cause of disability of people that influences the quality of their daily life...
EMG signals are often used to control prostheses or assistive devices, but have been rarely used in ...