Javascript must be enabled to continue!
Assisting walking balance using a bio-inspired exoskeleton controller
View through CrossRef
Abstract
Balance control is important for mobility, yet exoskeleton research has mainly focused on improving metabolic energy efficiency. Here we present a biomimetic exoskeleton controller that supports walking balance and reduces muscle activity. Humans restore balance after a perturbation by adjusting activity of the muscles actuating the ankle in proportion to deviations from steady-state center of mass kinematics. We designed a controller that mimics the neural control of steady-state walking and the balance recovery responses to perturbations. This controller uses both feedback from ankle kinematics in accordance with an existing model and feedback from the center of mass velocity. Control parameters were estimated by fitting the experimental relation between kinematics and ankle moments observed in humans that were walking while being perturbed by push and pull perturbations. This identified model was implemented on a bilateral ankle exoskeleton. The exoskeleton provided 30% of the estimated ankle moment during steady-state and perturbed walking. Across twelve subjects, exoskeleton support reduced calf muscle activity in steady-state walking by 19 % with respect to a minimal impedance controller. Proportional feedback of the center of mass velocity improved balance support after perturbation. Muscle activity is reduced in response to push and pull perturbations by 10 and 16 % and center of mass deviations by 9 and 18% with respect to the same controller without center of mass feedback. Our control approach implemented on bilateral ankle exoskeletons can thus effectively support steady-state walking and balance control and therefore has the potential to improve mobility in balance-impaired individuals.
Title: Assisting walking balance using a bio-inspired exoskeleton controller
Description:
Abstract
Balance control is important for mobility, yet exoskeleton research has mainly focused on improving metabolic energy efficiency.
Here we present a biomimetic exoskeleton controller that supports walking balance and reduces muscle activity.
Humans restore balance after a perturbation by adjusting activity of the muscles actuating the ankle in proportion to deviations from steady-state center of mass kinematics.
We designed a controller that mimics the neural control of steady-state walking and the balance recovery responses to perturbations.
This controller uses both feedback from ankle kinematics in accordance with an existing model and feedback from the center of mass velocity.
Control parameters were estimated by fitting the experimental relation between kinematics and ankle moments observed in humans that were walking while being perturbed by push and pull perturbations.
This identified model was implemented on a bilateral ankle exoskeleton.
The exoskeleton provided 30% of the estimated ankle moment during steady-state and perturbed walking.
Across twelve subjects, exoskeleton support reduced calf muscle activity in steady-state walking by 19 % with respect to a minimal impedance controller.
Proportional feedback of the center of mass velocity improved balance support after perturbation.
Muscle activity is reduced in response to push and pull perturbations by 10 and 16 % and center of mass deviations by 9 and 18% with respect to the same controller without center of mass feedback.
Our control approach implemented on bilateral ankle exoskeletons can thus effectively support steady-state walking and balance control and therefore has the potential to improve mobility in balance-impaired individuals.
Related Results
Walkability; The Relationship of Walking Distance, Walking Time and Walking Speed
Walkability; The Relationship of Walking Distance, Walking Time and Walking Speed
Walking is cheap and healthy. It is the main transportation for the majority of students exploring their daily life in their campus area. Different types of people will have variou...
Influence of the Exoskeleton Training Course on the Energy Parameters of Walking in Patients with Multiple Sclerosis
Influence of the Exoskeleton Training Course on the Energy Parameters of Walking in Patients with Multiple Sclerosis
Aim. To identify the features of changes in the energy parameters of walking in patients with multiple sclerosis (MS) and their correction under the influence of the of the exoskel...
[RETRACTED] Guardian Blood Balance –Feel the difference Guardian Blood Balance makes! v1
[RETRACTED] Guardian Blood Balance –Feel the difference Guardian Blood Balance makes! v1
[RETRACTED]Guardian Blood Balance Reviews (Works Or Hoax) Does Guardian Botanicals Blood Balance AU Really Works? Read Updated Report! Diabetes and Hypertension is such a health p...
Motor module generalization across balance and walking is reduced after stroke
Motor module generalization across balance and walking is reduced after stroke
AbstractHere, we examined features of muscle coordination associated with reduced walking performance in chronic stroke survivors. Using motor module (a.k.a. muscle synergy) analys...
Computational Modelling of Musculoskeleton to Predict Human Response with Upper Arm Exoskeleton
Computational Modelling of Musculoskeleton to Predict Human Response with Upper Arm Exoskeleton
There are many situations where elderly people find it difficult to do their daily work, stroke affected people face difficulty in doing their daily routines independently, soldier...
Design Approaches of an Exoskeleton for Human Neuromotor Rehabilitation
Design Approaches of an Exoskeleton for Human Neuromotor Rehabilitation
This paper addresses a design for an exoskeleton used for human locomotion purposes in cases of people with neuromotor disorders. The reason for starting this research was given by...
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Purpose
To provide high torques needed to move a robot’s links, electric actuators are followed by a transmission system with a high transmission rate. For instance, gear ratios of...
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED]Keanu Reeves CBD Gummies ==❱❱ Huge Discounts:[HURRY UP ] Absolute Keanu Reeves CBD Gummies (Available)Order Online Only!! ❰❰= https://www.facebook.com/Keanu-Reeves-CBD-G...

