• 제목/요약/키워드: Textile-based sensor

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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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웨어러블 텍스타일 스트레인 센서 리뷰 (Wearable Textile Strain Sensors)

  • 노정심
    • 한국의류산업학회지
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    • 제18권6호
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    • pp.733-745
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    • 2016
  • This paper provides a review of wearable textile strain sensors that can measure the deformation of the body surface according to the movements of the wearer. In previous studies, the requirements of textile strain sensors, materials and fabrication methods, as well as the principle of the strain sensing according to sensor structures were understood; furthermore, the factors that affect the sensing performance were critically reviewed and application studies were examined. Textile strain sensors should be able to show piezoresistive effects with consistent resistance-extension in response to the extensional deformations that are repeated when they are worn. Textile strain sensors with piezoresistivity are typically made using conductive yarn knit structures or carbon-based fillers or conducting polymer filler composite materials. For the accuracy and reliability of textile strain sensors, fabrication technologies that would minimize deformation hysteresis should be developed and processes to complement and analyze sensing results based on accurate understanding of the sensors' resistance-strain behavior are necessary. Since light-weighted, flexible, and highly elastic textile strain sensors can be worn by users without any inconvenience so that to enable the users to continuously collect data related to body movements, textile strain sensors are expected to become the core of human interface technologies with a wide range of applications in diverse areas.

Activity and Safety Recognition using Smart Work Shoes for Construction Worksite

  • Wang, Changwon;Kim, Young;Lee, Seung Hyun;Sung, Nak-Jun;Min, Se Dong;Choi, Min-Hyung
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제14권2호
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    • pp.654-670
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    • 2020
  • Workers at construction sites are easily exposed to many dangers and accidents involving falls, tripping, and missteps on stairs. However, researches on construction site monitoring system to prevent work-related injuries are still insufficient. The purpose of this study was to develop a wearable textile pressure insole sensor and examine its effectiveness in managing the real-time safety of construction workers. The sensor was designed based on the principles of parallel capacitance measurement using conductive textile and the monitoring system was developed by C# language. Three separate experiments were carried out for performance evaluation of the proposed sensor: (1) varying the distance between two capacitance plates to examine changes in capacitance charges, (2) repeatedly applying 1 N of pressure for 5,000 times to evaluate consistency, and (3) gradually increasing force by 1 N (from 1 N to 46 N) to test the linearity of the sensor value. Five subjects participated in our pilot test, which examined whether ascending and descending the stairs can be distinguished by our sensor and by weka assessment tool using k-NN algorithm. The 10-fold cross-validation method was used for analysis and the results of accuracy in identifying stair ascending and descending were 87.2% and 90.9%, respectively. By applying our sensor, the type of activity, weight-shifting patterns for balance control, and plantar pressure distribution for postural changes of the construction workers can be detected. The results of this study can be the basis for future sensor-based monitoring device development studies and fall prediction researches for construction workers.

높은 민감도 및 우수한 피부 통기성을 가진 마이크로 섬유 기반의 직물형 유연 압력 센서 (Microfiber-based Textile Pressure Sensor with High Sensitivity and Skin-breathability)

  • 한강토;최장희;임정우;공혜영;배근열
    • 한국염색가공학회지
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    • 제35권3호
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    • pp.179-187
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    • 2023
  • In this study, we developed a microfiber-based flexible pressure sensor with high sensitivity and excellent skin breathability. A nonwoven fabric composed of microfibers was prepared by electrospinning, which resulted in excellent moisture permeability of the sensor (143 g∙m-2∙h-1). In particular, high-pressure sensitivity (0.36 kPa-1) was achieved by introducing submicron structures on the microfiber surface by controlling the ambient humidity during electrospinning. The fabrication technology of the microfiber-based flexible pressure sensors reported in this study is expected to contribute to the commercialization of flexible pressure sensors applicable to long-term wearable health monitoring as well as virtual/augmented reality and electronic skin applications.

산화아연(Zinc oxide) 나노입자와 은나노 와이어(Silver nanowire)를 함유한 Poly(vinylidene fluoride) 복합나노섬유 제조 및 동작 센서로의 적용 가능성 탐색 (Fabrication of Poly(Vinylidene Fluoride) Nanocomposite Fibers Containing Zinc Oxide Nanoparticles and Silver Nanowires and their Application in Textile Sensors for Motion Detection and Monitoring)

  • 양혁주;이승신
    • 한국의류학회지
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    • 제47권3호
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    • pp.577-592
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    • 2023
  • In this study, nanofiber-based textile sensors were developed for motion detection and monitoring. Poly(vinylidene fluoride) (PVDF) nanofibers containing zinc oxide (ZnO) nanoparticles and silver nanowires (AgNW) were fabricated using electrospinning. PVDF was chosen as a piezoelectric polymer, zinc oxide as a piezoelectric ceramic, and AgNW as a metal to improve electric conductivity. The PVDF/ZnO/AgNW nanocomposite fibers were used to develop a textile sensor, which was then incorporated into an elbow band to develop a wearable smart band. Changes in the output voltage and peak-to-peak voltage (Vp-p) generated by the joint's flexion and extension were investigated using a dummy elbow. The β-phase crystallinity of pure PVDF nanofibers was 58% when analyzed using Fourier transform infrared spectroscopy; however, the β-phase crystallinity increased to 70% in PVDF nanofibers containing ZnO and to 78% in PVDF nanocomposite fibers containing both ZnO and AgNW. The textile sensor's output voltage values varied with joint-bending angle; upon increasing the joint angle from 45° to 90° to 150°, the Vp-p value increased from 0.321 Vp-p to 0.542 Vp-p to 0.660 Vp-p respectively. This suggests that the textile sensor can be used to detect and monitor body movements.

Synthesis and Optical Properties of Novel Chemosensor Based on Rhodamine 6G

  • Kim, Hyungjoo;Son, Young-A
    • 한국염색가공학회지
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    • 제24권4호
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    • pp.233-238
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    • 2012
  • The opto-functional materials have been developed as a promising research topic toward the end uses for optical materials and applications. The attractive area in this part was the design of sensor molecules for detecting harmful environmental factors. These harmful factors impart undesired effects on wide range of chemical and biological phenomenon. In this context, many researchers have studied luminescence chemosensor materials. These sensor molecules showed optical signals such as color or fluorescence change by detecting harmful environmental factors. In this study, the novel fluorescence chemosensor 1 has been designed and synthesized through reaction of rhodamine 6g hydrazide and 2-hydroxy-1-naphthaldehyde. The chemosensor 1 had been analyzed by UV-Vis and fluorescence spectrophotometer. We found that this chemosensor 1 has 'off-on' and dual type sensing properties toward $Cu^{2+}$ and $Mg^{2+}$.

허벅지 운동능력 측정을 위한 스트레치 센서 개발 (Development of Stretch Sensors to Measure Thigh Motor Capacity)

  • 장진철;박진희;김주용
    • 패션비즈니스
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    • 제25권5호
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    • pp.99-113
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    • 2021
  • This study aimed to produce sensors for measuring thigh motor skills. A textile stretch sensor was manufactured using a CNT(Carbon Nano Tube) 0.1 wt% water SWCNT(Single-Walled Carbon Nano Tube) solution, and different designs were applied to increase the sensitivity of the sensor, and different GF(Gauge Factor) values were compared using UTM devices. The same design was applied to fabrics and weaves to observe changes in performance according to fibrous tissue, and the suitability of sensors was determined based on tensile strength, elongation, and the elongation recovery rate. Sensitivity was found to vary depending upon the design. Thus the manufactured sensor was attached to a pair of fitness pants as a prototype, divided into lunge position and squat position testing, and the stretch sensor was used to measure thigh movements. It was shown that stretch sensors used to measure thigh motor skills should have light and flexible features and that elongation recovery rates and tensile strength should be considered together. The manufactured stretch sensor may be applicable to various sports fields that use lower limb muscles, wearable healthcare products, and medical products for measuring athletic ability.

Implementation of Real-time Sedentary Posture Correction Cushion Using Capacitive Pressure Sensor Based on Conductive Textile

  • Kim, HoonKi;Park, HyungSoo;Oh, JiWon
    • 한국컴퓨터정보학회논문지
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    • 제27권2호
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    • pp.153-161
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    • 2022
  • 일상생활의 전반에 걸쳐 필요한 생활용품들이 자동화, 스마트화, 지능화됨으로 인해 물리적인 활동이 줄고 앉아 있는 시간이 늘어가는 추세이다. 최근 헬스케어 연구에서는 앉아 있는 시간에 비례해서 비만, 당뇨병, 심장혈관질환, 그리고 조기사망의 가능성이 높아진다고 보고되었다. 본 논문에서는 전도성 섬유 기반 전기용량성 압력 센서를 이용한 실시간 앉은 자세 교정 방석을 개발한다. 자세 교정 방석의 핵심 부품인 전도성 섬유를 이용한 압력 센서를 개발하고, 저전력 기반의 압력 측정 회로를 개발한다. 자세 교정 방석에서 BLE(Bluetooth Low Energy) 근거리 무선통신을 이용하여 실시간으로 측정된 센서값을 스마트 폰으로 전송할 수 있는 기능을 제공하고, 이 센서값을 통해 앉은 자세의 상태를 확인할 수 있도록 모바일 앱을 개발한다. 모바일 앱에서는 앉은 자세를 시각화하여 실시간으로 확인할 수 있고 잘못된 자세로 일정시간 유지할 경우 알람으로 알릴 수 있다. 또한, 앉아 있는 시간 및 자세 정확도를 그래프로 시각화할 수 있도록 한다. 본 논문의 교정 방석을 통해 사용자의 앉아 있는 자세 상태를 인지하여 실제적으로 사용자 자세 교정에 얼마나 효과적인지를 실험해 보고 타제품과 비교하여 차별성과 우수성을 제시한다.

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.

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.