• 제목/요약/키워드: Smart Textile Sensor

검색결과 41건 처리시간 0.022초

PEDOT 기상중합 원단을 이용한 멀티 레이어 압력 센서 개발 (Development of Multi-layer Pressure Sensor using PEDOT Vapor Phase Polymerization)

  • 임승주;배종혁;장성진;임지영;박근혜;고재훈
    • 센서학회지
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    • 제27권3호
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    • pp.186-191
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    • 2018
  • Smart textile industries have been precipitously developed and extended to electronic textiles and wearable devices in recent years. In particular, owing to an increasingly aging society, the elderly healthcare field has been highlighted in the smart device industries, and pressure sensors can be utilized in various elderly healthcare products such as flooring, mattress, and vital-sign measuring devices. Furthermore, elderly healthcare products need to be more lightweight and flexible. To fulfill those needs, textile-based pressure sensors is considered to be an attractive solution. In this research, to apply a textile to the second layer using a pressure sensing device, a novel type of conductive textile was fabricated using vapor phase polymerization of poly(3,4-ethylenedioxythiophene) (PEDOT). Vapor phase polymerization is suitable for preparing the conductive textile because the reaction can be controlled simply under various conditions and does not need high-temperature processing. The morphology of the obtained PEDOT-conductive textile was observed through the Field Emission Scanning Electron Microscope (FESEM). Moreover, the resistance was measured using an ohmmeter and was confirmed to be adjustable to various resistance ranges depending on the concentration of the oxidant solution and polymerization conditions. A 3-layer 81-point multi-pressure sensor was fabricated using the PEDOT-conductive textile prepared herein. A 3D-viewer program was developed to evaluate the sensitivity and multi-pressure recognition of the textile-based multi-pressure sensor. Finally, we confirmed the possibility that PEDOT-conductive textiles could be utilized by pressure sensors.

센서 기반형 스마트 의류의 디자인을 위한 사용성 평가 척도 개발 (The development of Usability Evaluation Criterion for sensor based smart clothing)

  • 조하경;이주현
    • 한국의류산업학회지
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    • 제10권4호
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    • pp.473-478
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    • 2008
  • Since the late 1990, "Smart clothing" has been developed in a various way to meet user centered design and human engineering that considered usability, wearability with clothing. Under this circumstance, research and development of smart clothing has been demanded usability and wearability test. But, Study of the usability evaluation for sensor based smart clothing is insufficient. In this study, we suggest criterion of usability evaluation for sensor based smart clothing that evaluate on the point of view such as wearability of clothing, interaction of clothing and devices, interaction of body and devices. we performed qualitative and quantitative test with developed smart clothing to present usability evaluation criterion for sensor based smart clothing. As a result, total 7 categories such as 'usefulness', 'wearability', 'appearance', 'riskness', 'facility of management', 'perceived change', were extracted as the usability and wearability criterion. Additionally, 28 factors of evaluation criterion for sensor based smart clothing were indicated on the result of this research. This study have meaning to indicate usability evaluation criterion for sensor based smart clothing.

Sheath-core 구조 전도사 섬유센서의 Home-Textile 적용을 위한 전기·물리학적 특성연구 (Electrical and Physical Properties of Sheath-core Type Conductive Textile Sensor with Home-Textile)

  • 조광년;정현미
    • 한국의류산업학회지
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    • 제16권1호
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    • pp.145-152
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    • 2014
  • The usage of textile-based sensors has increased due to their many advantages (compared to IT sensors) when applied to body assessment and comfort. Textile-based sensors have different detecting factors such as pressure, voltage, current and capacitance to investigate the characteristics. In this study, textile-based sensor fabrics with sheath-core type conductive yarns were produced and the relationship between capacitance changes and applied load was investigated. The physical and electric properties of textile-based sensor fabrics were also investigated under various laminating conditions. A textile based pressure sensor that uses a sheath-core conductive yarn to ensure the stability of the pressure sensor in the textile-based sensor (the physical structure of the reaction characteristic of the capacitance) is important for the stability of the initial value of the initial capacitance value outside the characteristic of the textile structural environment. In addition, a textile based sensor is displaced relative to the initial value of the capacitance change according to pressure changes in the capacitance value of the sensor due to the fineness of the high risk of noise generation. Changing the physical structure of the fabric through the sensor characteristic of the pressure sensor via the noise generating element of laminating (temperature, humidity, and static electricity) to cut off the voltage output element to improve the data reliability could be secured.

동작센싱 스마트레깅스 프로토타입 개발 (Developing a Prototype of Motion-sensing Smart Leggings)

  • 황진희;지승현;김선희
    • 한국의류산업학회지
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    • 제24권6호
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    • pp.694-706
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    • 2022
  • This study focusses on the development of a motion-sensing smart leggings prototype with the help of a module that monitors motion using a fiber-type stretch sensor. Additionally, it acquires data on Electrocardiogram (ECG), respiration, and body temperature signals, for the development of smart clothing used in online exercise coaching and customized healthcare systems. The research process was conducted in the following order: 1) Fabrication of a fiber-type elastic strain sensor for motion monitoring, 2) Positioning and attaching the sensor, 3) Pattern development and three-dimensional (3D) design, 4) Prototyping 5) Wearability test, and 6) Expert evaluation. The 3D design method was used to develop an aesthetic design, and for sensing accurate signal acquisition functions, wearability tests, and expert evaluation. As a result, first, the selection or manufacturing of an appropriate sensor for the function is of utmost importance. Second, the selection and attachment method of a location that can maximize the function of the sensor without interfering with any activity should be studied. Third, the signal line selection and connection method should be considered, and fourth, the aesthetic design should be reflected along with functional verification. In addition, the selection of an appropriate material is important, and tests for washability and durability must be made. This study presented a manufacturing method to improve the functionality and design of smart clothing, through the process of developing a prototype of motion-sensing smart leggings.

사용성 평가에 기반한 센서 기반 헬스 케어 스마트 의류의 모형 개발 (The Development of Sensor based Healthcare Smart clothing based on usability test)

  • 조하경;이주현
    • 감성과학
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    • 제11권1호
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    • pp.81-90
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    • 2008
  • 최근의 스마트 의류는 급변하는 환경과 테크놀로지 그리고 인간중심의 패러다임의 변화는 기술적 발전과 더불어 보다 인간 중심의 요소와 감성을 중시한 디자인을 요구하며, 기술적인 측면과 함께 보다 인간 중심의 사용성 평가를 중시하는 디자인으로 연구, 개발되고 있다. 이에 본 연구에서는 헬스케어를 위한 생체신호 측정 센서 기반 스마트 의류의 디자인 프로토 타입을 개발, 사용성 평가 및 착용성 평가를 실시하였다. 평가는 정성적, 정량적 평가로 이루어졌으며, 사용성 평가 결과를 기반으로 도출된 문제점의 수정, 보완을 통해 최종 센서기반 스마트 의류의 모형을 제시하였다.

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구현방식이 용이한 텍스타일 터치센서 개발 및 구조적 설계 (Development and Structural Design of Textile Touch Sensor Easily Implemented)

  • 김지선;박진희;김주용
    • 한국의류학회지
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    • 제45권1호
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    • pp.168-179
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    • 2021
  • This study presents and develops a textile type touch sensor structural design that is easy to implement. First, the design of the touch sensor circuit finds the size of the switch with the easiest finger contact and selects a structure with a long circuit with the lowest resistance value. An experiment is performed on a change in an electrostatic capacitance value that accompanies the distance on the electrode and the magnitude of the electrode area of the structure; however, the structure having the distance on the electrode and the large electrode area shows the best resistance change. The laundry assessment was conducted three times at a time and ten times at a time with an average standard deviation less than one ohm, with little change in resistance. Consequently, there were no problems with durability and performance for laundry. Finally, in the bending evaluation, the difference in resistance can be seen between 1-2 ohms and was developed as a smart wearable in the future; in addition, there was no problem as a difference in resistance can be seen between 1 and 2 ohms.

텍스타일형 스트레치 센서를 이용한 스마트 축구 양말 개발 -14~15세 여중생을 중심으로- (Development of Smart Soccer Socks Using a Textile Stretch Sensor -Focused on Middle School Girls between the Ages of 14 and 15-)

  • 김지선;박진희;김주용
    • 패션비즈니스
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    • 제24권3호
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    • pp.17-29
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    • 2020
  • This study aimed to produce fiber stretch sensors for smart soccer socks to prevent injuries during training. A sensor was manufactured with stretchable fabric and tested to ensure convenience during training. In order to manufacture the fiber stretch sensor, a CNT dispersion solution was applied to an e-band and elastic polyester fabric, and the performance of the sensors was evaluated by a tensile test. Performance evaluation showed that both of the tested fabrics are excellent for this purpose. Both sensors were attached to socks to create prototype wearable devices, and an experiment was conducted to determine whether a resistance change accompanying relaxation and contraction of the gastrocnemius muscle could be detected. In order to accurately evaluate performance as a sensor, the fabric was stretched 20 times at low speeds of 1 Hz and 0.5 Hz. A change in resistance due to tension was observed, with both the E-band and the stretchable poly fabric showing high sensitivity and high reproducibility. Both can be used as relaxation/contraction sensors. Smart soccer socks were made using the two materials, and an evaluation was conducted. Tensile tests were done on the smart soccer socks; the tests were done 20 times per sock, and the sensor showed a stable resistance change between 30 and 40 ohms depending on the tension of the sensor. As a result, we confirmed that smart soccer socks with stretch sensors made of E-bands can measure changes in the gastrocnemius muscle.

명상호흡 모니터링용 스마트의류를 위한 호흡수 측정 직물센서 연구 (A Study on the Textile Sensor Applied to Smart Wear for Monitoring Meditation Breathing)

  • 황수정;정윤원;이주현
    • 감성과학
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    • 제21권1호
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    • pp.83-90
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    • 2018
  • 본 연구의 목적은 정신적, 신체적 힐링을 위한 명상용 스마트 의류 개발을 위한 기초연구로서 명상 시 복식호흡 수를 측정함으로써, 의복을 통해 명상의 진입상태를 모니터링 하기 위한 방법을 연구하는 것이다. 이를 위해 본 연구에서는 Single Wall Carbon Nano-Tube (SWCNT)를 기반으로 한 스트레인 게이지 타입의 직물센서를 구현하고, 1차 실험으로 0.1 Hz의 주기로 복부형태의 더미를 5 cm 길이로 2분간 개폐를 반복하여 명상호흡을 시뮬레이션 한 결과 참조전극인 BIOPAC과 직물호흡센서의 신호가 매우 높은 일치도를 나타냈다(p<0.001). 같은 조건으로 2차 본 실험에서 피험자 4명에게 명상호흡을 수행하도록 하였고, 배꼽점, 횡경막 부근 중심과 측면 총 4군데 위치에서 출력된 전압 값을 비교한 결과 배꼽점 중심 위치와 횡경막 측면에서 신호의 일치도가 높고, 크고 안정된 신호형태를 보여 명상호흡을 측정하기에 적합한 위치로 선정되었다. 따라서 본 연구에서는 긴 호흡주기의 명상호흡을 측정하기 위한 직물센서를 구현하고, 이 센서의 명상 호흡수 측정을 위한 신뢰성과 타당성을 검토하며, 인체 상 측정위치에 따른 호흡 수 측정효율을 비교, 고찰하는 것을 목표로 하였다.

소비자의 혁신성과 신뢰가 센서기반 스마트 의류 수용의도에 미치는 영향 (The Influence of Consumers' Innovativeness and Trust on Acceptance Intention of Sensor-based Smart Clothing)

  • 박현희;노미진
    • 한국의류산업학회지
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    • 제14권1호
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    • pp.24-36
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    • 2012
  • This study examines consumer's acceptance intention of sensor-based smart clothing empolying the extended TAM. Technology innovativeness, information innovativeness and trust were used as external variables and perceived palyfulness was included in the extetended TAM. Data were collected from the adults over 20 years old living in Daegu from March 14 to 18, 2011. 193 useful copies of data were analyzed to investigate a structural model and test research hypotheses using AMOS 7.0. The study results showed that the extended TAM for smart clothing was validated empirically in predicting the individual's acceptance of sensor-based smart clothing and 10 hypotheses among 12 hypotheses were supported. Technology innovation, information innovation, and trust were confirmed as antecedent variables in affecting extended TAM. Perceived usefulness and perceived playfulness directly influenced acceptance intention and indirectly influenced acceptance intention mediating attitude. Perceived usefulness affected perceived playfulness and attitude affected acceptance intention. This study will help marketers and managers of fashion companies devise effective tools in planning marketing strategies related to smart clothing.

사이클링 스마트웨어 제작을 위한 빕 팬츠 디자인 및 패턴 개발 (Development of Bib Pants Design and Pattern for Cycling Smart Wear)

  • 김윤영;유병하;이우재;이기광;김리라
    • 패션비즈니스
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    • 제26권5호
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    • pp.91-104
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    • 2022
  • In this study, a cycling smart wear for measuring cycling posture and motion was developed using a three-dimensional motion analysis camera and an IMU inertial sensor. Results were compared according to parts to derive the optimal smart device attachment location, enabling correct posture measurement and cycle motion analysis to design a pattern. Conclusions were as follows: 1) 'S-T8' > 'S-T10' > 'S-L4' was the most significant area for each lumbar spine using a 3D motion analysis system with representative posture change (90°, 60°, 30°) to derive incisions and size specifications; 2) the part with the smallest relative angle change among significant section reference points during pattern design was applied as a reference point for attaching a cycling smart device to secure detachable safety of the device. Optimal locations for attaching the cycling device were the "S-L4" hip bone (Sacrum) and lumbar spine No. 4 (Lumbar 4th); 3) the most suitable sensor attachment location for monitoring knee induction-abduction was the anatomical location of the rectus femoris; 4) a cycling smart wear pattern was developed without incision in the part where the sensor and electrode passed. The wearing was confirmed with 3D CLO. This study aims to provide basic research on exercise analysis smart wear, to expand the smart cycling area that could only be realized with smart devices and smart watches attached to current cycles, and to provide an opportunity to commercialize it as cycling smart wear.