ICRA 2024poster2 citations

Design of a Front-enveloping Powered Exoskeleton Considering Optimal Distribution of Actuating Torques and Center of Mass

Jeongsu Park, Kyeongsu Shi, Gunhee Lee, Hyojun An, Seunghwan Kim, Chanyoung Ko, Taeyeon Kim, Hyeongjun Kim

Abstract

Traditionally, powered exoskeletons have predominantly featured a back-enveloping design due to its simplicity in both implementation and user donning. However, this design results in a backward shift of the center of mass (CoM) in the sagittal plane. This paper identifies the limitations of existing design approaches and determines the optimal anterior-posterior (A/P) CoM position considering factors like actuating power, balance in the neutral posture, and user’s hand workspace. Our optimization analysis recommends placing the CoM in front of the user. We address historical constraints on front-enveloping designs and propose solutions. Furthermore, we validate the usability of our designed exoskeleton through testing with a complete paraplegic user.

BibTeX
@inproceedings{icra2024_designofafronten,
  title = {Design of a Front-enveloping Powered Exoskeleton Considering Optimal Distribution of Actuating Torques and Center of Mass},
  author = {Jeongsu Park and Kyeongsu Shi and Gunhee Lee and Hyojun An and Seunghwan Kim and Chanyoung Ko and Taeyeon Kim and Hyeongjun Kim and Kyoungchul Kong},
  booktitle = {ICRA 2024},
  year = {2024}
}
Design of a Front-enveloping Powered Exoskeleton Considering Optimal Distribution of Actuating Torques and Center of Mass · ICRA 2024