• 제목/요약/키워드: Fabric Sensor

검색결과 81건 처리시간 0.024초

슬관절 운동 평가를 위한 생체 임피던스 측정용 전도성 섬유센서 개발 및 평가 (Development and Assessment of Conductive Fabric Sensor for Evaluating Knee Movement using Bio-impedance Measurement Method)

  • 이병우;이충근;조하경;이명호
    • 대한의용생체공학회:의공학회지
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    • 제32권1호
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    • pp.37-44
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    • 2011
  • This paper describes the development and assessment of conductive fabric sensor for evaluating knee movement using bio-impedance measurement method. The proposed strip-typed conductive fabric sensor is compared with a dot-typed Ag/AgCl electrode for evaluating validity under knee movement condition. Subjects are composed of ten males($26.6{\pm}2.591$) who have not had problems on their knee. The strip-typed conductive fabric sensor is analyzed by correlation and reliability between a dot-typed Ag/AgCl electrode and the strip-typed conductive fabric sensor. The difference of bio-impedance between a dot-typed Ag/AgCl electrode and the strip-typed conductive fabric sensor averages $7.067{\pm}13.987\;{\Omega}$ As the p-value is under 0.0001 in 99% of t-distribution, the strip-typed conductive fabric sensor is correlated with a dot-typed Ag/AgCl electrode by SPSS software. The strip-typed conductive fabric sensor has reliability when it is compared with a dot-typed Ag/AgCl electrode because most of bio-impedance values are in ${\pm}1.96$ standard deviation by Bland-Altman Analysis. As a result, the strip-typed conductive fabric sensor can be used for assessing knee movement through bio-impedance measurement method as a dot-typed Ag/AgCl electrode. Futhermore, the strip-typed conductive fabric sensor is available for wearable circumstances, applications and industries in the near future.

원단 변사 감지를 위한 비접촉식 원단 변사 검출 센서 개발 (Developing the Non-contact Detection Sensor for sensing Fiber Selvage)

  • 이대희;이재용
    • 전기전자학회논문지
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    • 제20권4호
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    • pp.454-458
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    • 2016
  • 일반적으로 원단 후가공시 원단의 가장자리를 핀으로 고정하게 되는데, 이때 원단의 고정 부분의 흠집으로 인해 감긴 원단의 포장 보관 시 변사부분이 부풀어 올라 전체적으로 원단의 변형이 발생한다. 원단의 변형 및 손상은 섬유제품의 품질 저하로 이어지기 때문에 원단 변사부분의 검출은 원단 마무리 가공에서 반드시 필요하다. 본 연구에서는 원단제조시 제품의 품질을 좌우하는 자동 변사 커팅(auto selvage cutting)시스템에 사용하는 비접촉식 변사검출 센서를 연구하였다. 이를 위해 32개의 센서를 2.5mm 간격으로 배열하여 감지하는 센서시스템을 개발하였고 이변사검출센서 시스템으로 실제 변사 검출이 가능한 것을 실험으로 확인 하였다.

동작 모니터링 스마트 의류를 위한 직물 센서의 성능 평가: 더미 실험을 중심으로 (Performance Evaluation of Fabric Sensors for Movement-monitoring Smart Clothing: Based on the Experiment on a Dummy)

  • 조현승;박선형;강다혜;이강휘;강승진;한보람;오정훈;이해동;이주현;이정환
    • 감성과학
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    • 제18권4호
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    • pp.25-34
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    • 2015
  • 본 연구에서는 전도성 직물을 기반으로 동작 센서로 구현하여 팔의 굽힘, 폄 동작에 따른 센서의 전기저항의 변화를 측정, 분석함으로써 관절 동작을 효과적으로 측정 할 수 있는 직물 센서의 요건을 탐색하였다. 이를 위해 두 가지 편직물인 'L'직물과 'W'직물 양면에 Single Wall Carbon Nano-Tube(SWCNT) 코팅을 한 후 이를 다양한 형태로 후가공하여 직물 센서를 개발하고 암 밴드에 부착하였다. 직물 센서는 코팅용 바탕 직물의 종류(2가지), 센서의 부착 방법(2가지), 센서의 layer 수(2가지), 센서의 길이(3가지), 센서의 너비(2가지)의 총 48개로 구성되었다. Con-Trex MJ에 48개의 암 밴드를 입힌 인체 모형 팔을 대상으로 직물 동작 센서의 성능을 평가하였다. 인체 모형 팔에 입혀진 총 48개의 암 밴드 각각에 대해서 frequency: 0.5Hz, ROM: $20^{\circ}{\sim}120^{\circ}$ 에서 굽힘과 폄 동작을 반복하도록 조정하였고, 48개 각 사례 당 세 세트(set)씩 반복 측정한 전압값을 기록하였다. 전압값을 peak-to-peak voltage(Vp-p)의 base line의 균일성, 동일 세트 내 Vp-p의 균일성, 세 세트 간의 Vp-p의 균일성을 기준으로 평가하고 분석한 결과, SWCNT 코팅된 'L' 직물을 두 겹으로 구성하여 열고정 방식으로 부착한 $50{\times}5mm$, $50{\times}10mm$, $100{\times}10mm$ 크기의 직물 센서와, SWCNT 코팅된 'W' 직물을 두 겹으로 구성하고 열고정 방식으로 부착한 $50{\times}10mm$ 크기의 직물 센서가 전체 변화율 5%이내의 가장 균일하고 안정적인 신호값을 나타내었다. 이상의 연구 결과를 통해 SWCNT 코팅 소재를 다양한 형태로 가공해 직물 센서로 구현했을 때 인체의 사지 동작을 측정할 수 있는 센서로서 적합함을 확인하였고, 최적의 센서 형태를 규명하였다.

황화수소(H2S) 감지를 위한 아세트산 납이 침염된 폴리에스터(PET) 섬유 기반의 변색성 센서 (Polyester (PET) Fabric dyed with Lead (II) acetate-based Colorimetric Sensor for Detecting Hydrogen Sulfide (H2S))

  • 이준엽;도남곤;정동혁;정동건;안희경;공성호;정대웅
    • 센서학회지
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    • 제29권5호
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    • pp.360-364
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    • 2020
  • In this study, the colorimetric sensor, polyester (PET) fabric dyed with lead (II) acetate (Pb(C2H3O2)2), was fabricated and characterized for the detection of the hydrogen sulfide (H2S). The surface morphology of the fabric was determined using scanning electron microscope and energy-dispersive X-ray spectroscopy. The optical properties of the fabric were evaluated by measuring the variation in the blue value of an RGB sensor. The fabric showed a significant color change, high linearity (R2 : 0.98256), and fast response time (< 1.0 s) when exposed to H2S. This is because the sensor is highly porous and permeable to the gas. The fabric can not only be used as a hydrogen sulfide sensor but also be used to detect and prevent H2S influx using sticky tape on pipelines.

맥파 측정 센서와 전도성 섬유, 임베디드 시스템 기반의 웨어러블 센서 글러브 구현 (Implementation of Wearable Sensor Glove using Pulse-wave Sensor, Conducting Fabric and Embedded System)

  • 이영범;이병우;이명호
    • 제어로봇시스템학회논문지
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    • 제13권3호
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    • pp.205-209
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    • 2007
  • Today, there are research trends about the wearable sensor device that measures various bio-signals and provides healthcare services to user using e-Health technology. This study describes the wearable sensor glove using pulse-wave sensor, conducting fabric and embedded system. This wearable sensor glove is based on the pulse-wave measurement system which is able to measure the pulse wave signal in much use of oriental medicine on the basis of a research trend of e-Health system.

야간 라이딩을 위한 스마트 애슬레져 패션디자인 개발 연구 (A Study on the Development of Smart Athleisure Fashion Design for Night Riding)

  • 박세은;김윤희
    • 한국융합학회논문지
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    • 제11권8호
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    • pp.115-122
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    • 2020
  • 본 연구는 야간 라이딩을 위한 패브릭 일렉트로닉스 기반의 안전 보호용 스마트 애슬레져 패션 개발 연구를 목적으로 하며 인간 친화성이 강화된 Fabric LED Display와 Fabric Capacitive touch sensor를 전도성 원사를 개발 및 활용하여 탈·부착 형태로 설계하여 구현하였다. 이러한 모듈의 탈·부착성은 다른 애슬레져 제품과 기능적·심미적인 요소를 교환 및 호환을 할 수 있도록 설계하여 기능뿐만 아니라 디자인의 다양화가 가능한 커스터마이즈 시스템으로 기존 제품들과 차별화된 스마트 애슬레져 패션 제품을 제안하였다는 점에서 연구의 의의가 있다. 후속 연구에서는 Fabric Electronics를 활용하여 착용성과 유연성이 강화된 직물의 물리적 속성에 적합한 직물센서를 개발하고 이를 활용한 커스터마이즈 스마트 패션을 제시할 예정이다.

Implementation of the Wearable Sensor Glove Using EDA Sensor and Conducting Fabric

  • Lee, Young-Bum;Lee, Byung-Woo;Choo, Young-Min;Kim, Jin-Kwon;Jung, Wan-Jin;Kang, Dae-Hoon;Lee, Myoung-Ho
    • 대한의용생체공학회:의공학회지
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    • 제28권2호
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    • pp.280-286
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    • 2007
  • The wearable sensor glove was developed using EDA sensors and conducting fabric. EDA(Electro-dermal Activity) signal is an electric response of human skin. There are SIL(Skin Impedance Level) and SIR(Skin Impedance Response) in EDA. SIL consists mostly of a DC component while SIR consists of an AC component. The relationship between drowsiness and the EDA signal is utilized. EDA sensors were made using a conducting fabric instead of AgCl electrodes, for a more suitable, more wearable device. The EDA signal acquisition module was made by connecting the EDA sensor gloves through conductive fabric lines. Also, the EDA signal acquisition module can be connected to a PC that shows the results of the EDA signal processing analysis and gives proper feedback to the user. This system can be used in various applications to detect drowsiness and prevent accidents from drowsiness for automobile drivers.

광섬유 굽힘 손실을 이용한 직물 기반의 광섬유 촉각센서 개발 (Development of fabric-based optical fiber tactile sensor using optical fiber bending loss)

  • 김주영;백상호;이정주
    • 센서학회지
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    • 제18권3호
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    • pp.210-216
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    • 2009
  • In this paper the tactile sensor system based on the bending loss of optical fiber sensor is presented. The sensor array was designed with fabric structure. The optical measuring system was composed of LED for light source and CCD camera for the signal light detector. Performance of this tactile sensor system was evaluated in various environments and compared with Harmon's design criteria. The result shows that load range is 3 g$\sim$100 g, resolution is 1.5 g, hysteresis error is 1.5%. The response linearity is good and flexibility of sensor array is excellent.

Optimization of SWCNT-Coated Fabric Sensors for Human Joint Motion Sensing

  • Cho, Hyun-Seung;Park, Seon-Hyung;Yang, Jin-Hee;Park, Su-Youn;Han, Bo-Ram;Kim, Jin-Sun;Lee, Hae-Dong;Lee, Kang-Hwi;Lee, Jeong-Whan;Kang, Bok-Ku;Chon, Chang-Soo;Kim, Han-Sung;Lee, Joo-Hyeon
    • Journal of Electrical Engineering and Technology
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    • 제13권5호
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    • pp.2059-2066
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    • 2018
  • This study explored the feasibility of utilizing an SWCNT-coated fabric sensor for the development of a wearable motion sensing device. The extent of variation in electric resistance of the sensor material was evaluated by varying the fiber composition of the SWCNT-coated base fabrics, attachment methods, number of layers, and sensor width and length. 32 sensors were fabricated by employing different combinations of these variables. Using a custom-built experimental jig, the amount of voltage change in a fabric sensor as a function of the length was measured as the fabric sensors underwent loading-unloading test with induced strains of 30 %, 40 %, and 50 % at a frequency of 0.5 Hz. First-step analysis revealed the following: characteristics of the strain-voltage curves of the fabric sensors confirmed that 14 out of 32 sensors were evaluated as more suitable for measuring human joint movement, as they yield stable resistance values under tension-release conditions; furthermore, significantly stable resistance values were observed at each level of strain. Secondly, we analyzed the averaged maximum, minimum, and standard deviations at various strain levels. From this analysis, it was determined that the two-layer sensor structure and welding attachment method contributed to the improvement of sensing accuracy.

슬관절 운동 평가를 위한 생체 임피던스 측정용 전도성 섬유 센서의 여기 주파수별 특성 평가 (Excitation Frequency Characteristics of a Conductive Fabric Sensor Using the Bio-impedance for Estimating Knee Joint Movements)

  • 이병우;이충근;김진권;정완진;이명호
    • 전기학회논문지
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    • 제60권7호
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    • pp.1427-1433
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    • 2011
  • This study describes a conductive fabric sensor and determines an optimum excitation frequency of the sensor to evaluate knee joint movements. Subjects were composed of 15 males (age: $30.7{\pm}5.3$) with no known problems with their knee joints. The upper side of subjects' lower limbs was divided into two areas and the lower side of subjects' lower limbs was divided into three areas. The sensors were attached to 1 for 3 spot from a hip joint and to 3 for 4 spot from a knee joint which are the optimum conductive fabric sensor configuration to evaluate knee joint movements. As a result, the optimum excitation frequency for evaluating knee joint movements using conductive fabric sensors was 25 kHz. Average and standard deviation of bio-impedance changes from 15 subjects were $92.1{\pm}137.2{\Omega}$ at 25 kHz. The difference of bio-impedance changes between 25 kHz and 50 kHz was statistically significant (p<0.05) and the difference of bio-impedance changes between 25 kHz and 100 kHz was also statistically significant (p<0.001). These results showed that conductive fabric sensors are more sensitive to measure bio-impedance for evaluating knee joint movements as an excitation frequency decreases.