Applied Sciences, Free Full-Text

Description

Musculoskeletal disorders caused by poor work posture are a serious concern in the industry since they lead to absenteeism and medical leave from work. In the context of human–robot collaboration, this issue can be mitigated if collaborative robots support human workers to perform their tasks more ergonomically. In this work, we propose a method to optimize human posture during human–robot collaboration using the Particle Swarm Optimization (PSO) algorithm. Our approach involves assigning an appropriate location to the robot’s end-effector to minimize the distance between the optimized posture of the human and their current posture in the working space. To measure human posture, we use the Rapid Entire Body Assessment score (REBA) calculated from body joint angles captured by a Kinect camera. To validate the effectiveness of our proposed method, we conducted a user study with 20 participants in a virtual reality environment. The PSO algorithm could position the robot end-effector to the optimal position close to real time. Our results showed that our method could improve ergonomics by 66%, indicating its potential for use in human–robot collaborative applications.

Sport Performance & Science Reports

Applied Sciences, Free Full-Text, groups moodle ufsc

Applied Sciences, Free Full-Text, script king legacy mobile sem key

American Institute of Mathematical Sciences

Applied Sciences, Free Full-Text, rated output

Applied Sciences, Free Full-Text, press f to respect significado

Applied Science Fiction Vector Logo - Download Free SVG Icon

Applied Sciences, Free Full-Text, Filtration Efficiency of Electret Air Filters Reinforced by Titanium Dioxide, HT…

Applied Sciences, Free Full-Text, press fit

Applied Sciences An Open Access Journal from MDPI

Applied Sciences, Free Full-Text, press f to respect significado

Applied science : Free Download, Borrow, and Streaming : Internet Archive

$ 5.99USD
Score 4.7(393)
In stock
Continue to book