Javascript must be enabled to continue!
Research on Intelligent Wheelchair Attitude-Based Adjustment Method Based on Action Intention Recognition
View through CrossRef
At present, research on intelligent wheelchairs mostly focuses on motion control, while research on attitude-based adjustment is relatively insufficient. The existing methods for adjusting wheelchair posture generally lack collaborative control and good human–machine collaboration. This article proposes an intelligent wheelchair posture-adjustment method based on action intention recognition by studying the relationship between the force changes on the contact surface between the human body and the wheelchair and the action intention. This method is applied to a multi-part adjustable electric wheelchair, which is equipped with multiple force sensors to collect pressure information from various parts of the passenger’s body. The upper level of the system converts the pressure data into the form of a pressure distribution map, extracts the shape features using the VIT deep learning model, identifies and classifies them, and ultimately identifies the action intentions of the passengers. Based on different action intentions, the electric actuator is controlled to adjust the wheelchair posture. After testing, this method can effectively collect the body pressure data of passengers, with an accuracy of over 95% for the three common intentions of lying down, sitting up, and standing up. The wheelchair can adjust its posture based on the recognition results. By adjusting the wheelchair posture through this method, users do not need to wear additional equipment and are less affected by the external environment. The target function can be achieved with simple learning, which has good human–machine collaboration and can solve the problem of some people having difficulty adjusting the wheelchair posture independently during wheelchair use.
Title: Research on Intelligent Wheelchair Attitude-Based Adjustment Method Based on Action Intention Recognition
Description:
At present, research on intelligent wheelchairs mostly focuses on motion control, while research on attitude-based adjustment is relatively insufficient.
The existing methods for adjusting wheelchair posture generally lack collaborative control and good human–machine collaboration.
This article proposes an intelligent wheelchair posture-adjustment method based on action intention recognition by studying the relationship between the force changes on the contact surface between the human body and the wheelchair and the action intention.
This method is applied to a multi-part adjustable electric wheelchair, which is equipped with multiple force sensors to collect pressure information from various parts of the passenger’s body.
The upper level of the system converts the pressure data into the form of a pressure distribution map, extracts the shape features using the VIT deep learning model, identifies and classifies them, and ultimately identifies the action intentions of the passengers.
Based on different action intentions, the electric actuator is controlled to adjust the wheelchair posture.
After testing, this method can effectively collect the body pressure data of passengers, with an accuracy of over 95% for the three common intentions of lying down, sitting up, and standing up.
The wheelchair can adjust its posture based on the recognition results.
By adjusting the wheelchair posture through this method, users do not need to wear additional equipment and are less affected by the external environment.
The target function can be achieved with simple learning, which has good human–machine collaboration and can solve the problem of some people having difficulty adjusting the wheelchair posture independently during wheelchair use.
Related Results
Smart Wheel Chair using IOT
Smart Wheel Chair using IOT
The microcontroller based wheelchair using android is a device designed to assist individuals with mobility impairments. The system utilizes an Android application installed on a s...
Wearable Wheelchair Mobility Performance Measurement in Basketball, Rugby, and Tennis: Lessons for Classification and Training
Wearable Wheelchair Mobility Performance Measurement in Basketball, Rugby, and Tennis: Lessons for Classification and Training
Athlete impairment level is an important factor in wheelchair mobility performance (WMP) in sports. Classification systems, aimed to compensate impairment level effects on performa...
Six inertial measurement unit-based components describe wheelchair mobility performance during wheelchair tennis matches
Six inertial measurement unit-based components describe wheelchair mobility performance during wheelchair tennis matches
AbstractThe aim of this explorative study was to determine the key inertial measurement unit-based wheelchair mobility performance components during a wheelchair tennis match. A to...
619. Pharmacokinetic-Pharmacodynamic (PK-PD) Target Attainment Analyses to Support Epetraborole Dose Selection for the Treatment of Patients with Mycobacterium avium Complex (MAC) Lung Disease
619. Pharmacokinetic-Pharmacodynamic (PK-PD) Target Attainment Analyses to Support Epetraborole Dose Selection for the Treatment of Patients with Mycobacterium avium Complex (MAC) Lung Disease
Abstract
Background
Epetraborole (EBO) is an orally available, bacterial leucyl transfer RNA synthetase inhibitor that concentra...
LB2306. Population Pharmacokinetic (PPK), Pharmacokinetic/Pharmacodynamic attainment (PTA), and Clinical Pharmacokinetic/Pharmacodynamic (PK/PD) Analyses for Sulbactam-Durlobactam (SUL-DUR) to Support Dose Selection for the Treatment of Acinetobacter baum
LB2306. Population Pharmacokinetic (PPK), Pharmacokinetic/Pharmacodynamic attainment (PTA), and Clinical Pharmacokinetic/Pharmacodynamic (PK/PD) Analyses for Sulbactam-Durlobactam (SUL-DUR) to Support Dose Selection for the Treatment of Acinetobacter baum
Abstract
Background
SUL-DUR is a β-lactam/β-lactamase inhibitor combination in development for the treatment of ABC infections, ...
Real-Life Wheelchair Mobility Metrics from IMUs
Real-Life Wheelchair Mobility Metrics from IMUs
Daily wheelchair ambulation is seen as a risk factor for shoulder problems, which are prevalent in manual wheelchair users. To examine the long-term effect of shoulder load from da...
PREVALENCE OF SHOULDER PAIN AMONG LONG-TERM MANUAL WHEELCHAIR USERS: A CROSS-SECTIONAL STUDY
PREVALENCE OF SHOULDER PAIN AMONG LONG-TERM MANUAL WHEELCHAIR USERS: A CROSS-SECTIONAL STUDY
Background: Shoulder pain is a common musculoskeletal problem among manual wheelchair users because the upper limbs are repeatedly used for propulsion, transfers, pressure relief, ...
Biomechanics and Physiology for Propelling Wheelchair Uphill Slope
Biomechanics and Physiology for Propelling Wheelchair Uphill Slope
A vertical slope of sidewalks significantly inhibits to the mobility of manual wheelchair users in their daily life. International guidelines of the vertical slope are specified ap...

