신발 내 힘 측정을 위한 유연 힘 측정 패드의 설계 및 성능 검증
An air-filled pad with elastomeric pillar array designed for a force-sensing insole
- 주제(키워드) Soft sensor , Force sensor , Wearable sensors
- 발행기관 서강대학교 일반대학원
- 지도교수 공경철
- 발행년도 2018
- 학위수여년월 2018. 2
- 학위명 석사
- 학과 및 전공 일반대학원 기계공학과
- 실제URI http://www.dcollection.net/handler/sogang/000000062830
- 본문언어 영어
- 저작권 서강대학교 논문은 저작권보호를 받습니다.
초록/요약
Studies on footwear-based wearable devices for gait and motion monitoring have been conducted by many researchers, and the force measurement of a foot is one of the most important topics among them. In this paper, we present the design of a soft force-sensing pad for in-shoe force measurement. A force-sensing method based on an air pressure sensor is utilized to robustly measure the force caused by compression in a shoe. To withstand the human weight, an air-filled structure with an elastomeric pillar array is designed. The force is measured by the increase in air pressure caused by pillar compression. Due to the simple structure of the sensor, it has the advantage that it can be made into various forms such as an insole pad. To verify the sensor performance, experiments are performed to compare its accuracy, hysteresis, and repeatability with an off-the-shelf load cell. The measured results show an accuracy error of 0.249 kgf, a hysteresis error of 1.071 kgf, and a repeatability error of 0.202 kgf. To verify the robustness of the proposed sensor, accuracy and precision change under nine different compression conditions is calculated, and the results show an accuracy error of 0.672 kgf. Moreover, width variation of the proposed sensor is about four times smaller than the widely used Force Sensing Resistor sensor.
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