• 제목/요약/키워드: Wearable electronic device

검색결과 100건 처리시간 0.025초

스마트워치 사용자감성에 기반한 생체신호측정용 스마트 텍스타일의 요구조건 탐색 (Exploring Requirements of the Smart Textiles for Bio-Signal Measurement Based on Smart Watch User Sensibility)

  • 장은지;김인환;이유진;조길수
    • 감성과학
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    • 제20권4호
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    • pp.89-100
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    • 2017
  • 초연결사회의 시대가 도래하여 시간과 공간의 제약없이 효율적으로 정보를 전달할 수 있는 스마트 디바이스의 사용이 보편화되었다. 스마트 디바이스는 사람과 사물 간의 상호작용을 통하여 정보를 전달할 수 있도록 점차 웨어러블 형태로 발전하고 있으며, 의복 형태의 스마트 디바이스인 스마트의류는 인체에 가장 밀착한 상태로 각종 생체신호 등의 측정이 가능하기 때문에 미래 일상생활에서 사용도가 높아질 것으로 주목받고 있다. 기존에 개발된 스마트의류는 의복에 전자장치를 부착한 형태로 개발되어 기기 이물감으로 인해 착용 시 사용자의 불편을 야기하여 지속적으로 생체신호를 측정하기에 한계가 있었다. 이에 따라 점차 전자장치가 텍스타일 내의 한 요소로 통합되어 있는 스마트 텍스타일을 기반으로 한 스마트의류의 개발이 요구된다. 본 연구에서는 현재 소비자에게 가장 근접한 웨어러블 디바이스인 스마트워치 사용자를 대상으로 하여 사용경험에 기반한 감성을 통해 웨어러블 디바이스에서 사용자가 필요로 하는 요구조건을 탐색하고자 하였다. 스마트워치 사용자의 경험에 기반한 감성에 대해 구체적인 답변을 얻고자 반구조화 된 심층인터뷰를 통해 질적 연구를 수행하였으며, 심층인터뷰 내용을 바탕으로 사용자감성을 기능적, 심미적, 사회적, 경험적 네 가지 측면으로 분류하였다. 측면별로 감성키워드를 설정하여 빈도 수 확인을 통해 스마트워치 사용자의 관심도를 알아보았다. 본 연구의 결과를 미래의 웨어러블 디바이스로 주목받고 있는 스마트의류 제작에 필요한 스마트 텍스타일 개발을 위한 기초자료로 활용하고자 한다.

The Usefulness of a Wearable Device in Daily Physical Activity Monitoring for the Hospitalized Patients Undergoing Lumbar Surgery

  • Kim, Dong Hwan;Nam, Kyoung Hyup;Choi, Byung Kwan;Han, In Ho;Jeon, Tae Jin;Park, Se Young
    • Journal of Korean Neurosurgical Society
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    • 제62권5호
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    • pp.561-566
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    • 2019
  • Objective : Functional outcomes have traditionally been evaluated and compared using subjective surveys, such as visual analog scores (VAS), the Oswestry disability index (ODI), and Short Form-36 (SF-36), to assess symptoms and quality of life. However, these surveys are limited by their subjective natures and inherent bias caused by differences in patient perceptions of symptoms. The Fitbit $Charge^{(R)}$ (Fitbit Inc., San Francisco, CA, USA) provides accurate and objective measures of physical activity. The use of this device in patients after laminectomy would provide objective physical measures that define ambulatory function, activity level, and degree of recovery. Therefore, the present study was conducted to identify relationships between the number of steps taken by patients per day and VAS pain scores, prognoses, and postoperative functional outcomes. Methods : We prospectively investigated 22 consecutive patients that underwent laminectomy for spinal stenosis or a herniated lumbar disc between June 2015 and April 2016 by the same surgeon. When patients were admitted for surgery and first visited after surgery, preoperative and postoperative functional scores were recorded using VAS scores, ODI scores, and SF-36. The VAS scores and physical activities were recorded daily from postoperative day (POD) 1 to POD 7. The relationship between daily VAS scores and daily physical activities were investigated by simple correlation analysis and the relationship between mean number of steps taken and ODI scores after surgery was subjected to simple regression analysis. In addition, Wilcoxon's signed-rank test was used to investigate the significance of pre-to-postoperative differences in VAS, ODI, and SF-36 scores. Results : Pre-to-postoperative VAS (p<0.001), ODI (p<0.001), SF-36 mental composite scores (p=0.009), and SF-36 physical composite scores (p<0.001) scores were found to be significantly different. Numbers of steps taken from POD 1 to POD 7 were negatively correlated with daily VAS scores (r=-0.981, p<0.001). In addition, the mean number of steps from POD 3 to POD 7 and the decrease in ODI conducted one month after surgery were statistically significant (p=0.029). Conclusion : Wearable devices are not only being used increasingly by consumers as lifestyle devices, but are also progressively being used in the medical area. This is the first study to demonstrate the usefulness of a wearable device for checking patient physical activity and predicting pain and prognosis after laminectomy. Based on our experience, the wearable device used to provide measures of physical activity in the present study has the potential to provide objective information on pain severity and prognosis.

웨어러블 테크놀로지에 기반을 둔 고기능 스마트 재킷 설계 제안 (Suggestion of Functional Smart Jacket Based on Wearable Technology)

  • 이정란
    • 한국의류학회지
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    • 제35권3호
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    • pp.292-303
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    • 2011
  • This research suggested a draft proposal for a smart jacket design, which has applied wearable technologies to provide convenience in daily life. The smart jacket combined with a vest was the casual item for autumn and winter. The heating device was composed of the heating element, battery, controller, electric wire, connector, switch, and charger. A stable electronic conductor fiber of good heating effect with a flexible zigzag form has been selected for the heating element. The lighting device has been made in a way that attaches the LED and its power controller in the same mechanical device. As the result of the wearing test, the heating effect turned out to be effective in the order of: back, both the back and abdomen and only the abdomen. When wearing a smart jacket, the back and abdomen have been selected as favorable body parts for heating. Pockets and hems are selected as the adequate place to attach the LED lighting, and the brightness of LED lighting has turned out to be suitable and useful. Based on the test results, the first draft proposal has attached the heating element only in the back and its controller located in the inside pocket of the vest. In addition, the LED has been attached to the front pocket of the jacket. As to the second draft proposal, heating elements have been placed in the back and the abdomen. Each controller for the heating elements has been placed in the front and inside pocket of vest, and the LED lighting has been attached to the hem of the jacket. The smart jacket combined with a wearable device was assessed by functioning categories. The user showed a high satisfaction in the heating and illuminating function of a smart jacket.

RGB-LED-based Optical Camera Communication using Multilevel Variable Pulse Position Modulation for Healthcare Applications

  • Rachim, Vega Pradana;An, Jinyoung;Pham, Quan Ngoc;Chung, Wan-Young
    • 센서학회지
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    • 제27권1호
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    • pp.6-12
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    • 2018
  • In this paper, a 32-variable pulse position modulation (32-VPPM) scheme is proposed to support a red-green-blue light-emitting-diode (RGB-LED)-based optical camera communication (OCC) system. Our proposed modulation scheme is designed to enhance the OCC data transmission rate, which is targeted for the wearable biomedical data monitoring system. The OCC technology has been utilized as an alternative solution to the radio frequency (RF) wireless system for long-term self-healthcare monitoring. Different biomedical signals, such as electrocardiograms, photoplethysmograms, and respiration signals are being monitored and transmitted wirelessly from the wearable biomedical device to the smartphone receiver. A common 30 frames per second (fps) smartphone camera with a CMOS image sensor is used to record a transmitted optical signal. Moreover, the overall proposed system architecture, modulation scheme, and data demodulation are discussed in this paper. The experimental result shows that the proposed system is able to achieve > 9 kbps using only a common smartphone camera receiver.

압전 복합소재와 키리가미 섬유전극을 적용한 스트레쳐블 에너지 하베스팅 소자 (Stretchable Energy Harvester Based on Piezoelectric Composites and Kirigami Electrodes)

  • 김보란;현동열;박귀일
    • 한국전기전자재료학회논문지
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    • 제36권5호
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    • pp.525-530
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    • 2023
  • Stretchable piezoelectric energy harvester (S-PEHs) based on composite materials are considered one of the potential candidates for realizing wearable self-powered devices for smart clothing and electronic skin. However, low energy conversion performance and expensive stretchable electrodes are major bottlenecks hindering the development and application of S-PEHs. Here, we fabricated the S-PEH by adopting the piezoelectric composites with enhanced stress transfer properties and kirigami-patterned textile electrodes. The optimum contents of piezoelectric BaTiO3 nanoparticles inside the carbon nanotube/ecoflex composite were selected as 30 wt% considering the trade-off between stretchability and energy harvesting performance of the device. The final S-PEH shows an output voltage and mechanical stability of ~5 V and ~3,000 cycles under repeated 150% of tensile strain, respectively. This work presents a cost-effective and scalable way to fabricate stretchable piezoelectric devices for self-powered wearable electronic systems.

무선센서 네트워크를 이용한 웨어러블 자기장 센서 장치 (Wearable Magnetic Sensor Device Using Wireless Sensor Network)

  • 여희주
    • 한국산학기술학회논문지
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    • 제22권1호
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    • pp.294-298
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    • 2021
  • 최근 많은 전자 기기들이 무선센서 네트워크 기술들을 접목하면서, 다양한 종류의 센서들이 무선센서 네트워크로 연결하여 사용할 수 있게 되었다. 하지만, 이런 무선센서 네트워크 장비들은 다양한 종류의 네트워크 기술들을 사용하는 데, 각각의 네크워크 기술에 따라 장단점이 존재한다. 따라서 이런 장단점을 잘 고려하여 적용하려는 분야와 목적에 부합할 수 있도록 최적으로 잘 선택하여야 한다. 특히 자기장 관련 센서는 다른 센서들과 달리 복잡한 센서 데이터를 처리함에 있어서, 자기장 센서만의 독특한 특징과 성질이 존재하기 때문에, 개발 초기에 잘 이해한 후에 설계를 하여야 한다. 본 논문에서는 자기장 필드에 발생하는 자기장 센서 데이터의 비선형 데이터를 처리할 수 있는 저가이면서 소형의 웨어 러블 장비를 제안하였다. 또한 무선 센서 네트워크 기술들을 선택하는 방법에 대해서 논의를 하고, 실제 자기장 센서 장치들이 네트워크로 구성하는 방법을 소개하였다. 결론적으로 개발된 웨어러블 자기장 센서장치가 구성하는 무선 센서 토포러지를 제시하고, 이 무선센서 네트워크 망에서 실제 데이터 전송의 성능 및 효능을 보였다.

상황인식 스마트 주얼리 디바이스 설계 및 구현 (Design and Implementation of Context Awareness Smart Jewelry Device)

  • 강윤정;최동운
    • 한국정보통신학회논문지
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    • 제20권11호
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    • pp.2113-2118
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    • 2016
  • 스마트 주얼리는 사물인터넷의 구성요소를 적용하여 센서의 입력으로 얻은 상황정보를 처리하고, LED의 출력장치에 빛의 색상을 제어하여 보석에서 느낄 수 있는 반짝반짝 빛을 내는 아름다움과 신비감을 느낄 수 있도록 색과 빛의 효과를 부각시켜 심미 기능을 적용하였다. 상호작용이 가능하도록 통신 기능과 신체에 착용할 수 있는 웨어러블 기능이 있는 스마트 주얼리이다. 본 스마트 주얼리 보드에 컬러, 온도, 조도 센서를 장착하고, 블루투스 모듈로 상호작용이 가능하도록 설계하였다. 스마트 주얼리 착용자의 상황에 따라 주얼리 빛의 색상이 변할 수 있도록 알고리즘을 적용하여 모바일 어플리케이션을 구현하였다. 디지털 기술과 생활의 융합을 실현하고 더 나아가 IoT 환경에서의 스마트 주얼리 디바이스 개발의 방향성을 제시할 수 있을 것이다.

웨어러블 디바이스를 위한 은 나노와이어 코팅 전도사 개발 (The Development of Electro-Conductive Threads Coated with Silver Nanowires for Use in Wearable Devices)

  • 김지민;윤창상
    • 한국의류학회지
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    • 제45권4호
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    • pp.674-684
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    • 2021
  • Recent advances in electronic technology have engendered a need for research on the use of smart materials in clothing. Electro-conductive fibers are expected to be a crucial element of wearable devices. Therefore, in this study, we have attempted to develop electro-conductive threads and cables using silver nanowires. Based on the characteristics of silver nanowire, in which electro-conductivity can be imparted via heat treatment, we prepared conductive threads by coating nylon yarn with silver nanowires and curing at temperatures of 140℃, 150℃, and 160℃. Conductive threads cured at 140℃ had the highest conductivity, followed by threads cured at 160℃ and 150℃ respectively. The order of the electrical conductivity of the threads after tensile testing was consistent with the original order of the conductivity of the threads. When we evaluated the sensing performance of electro-conductive cables fabricated from these threads, the cables manufactured from threads cured at 140℃ and 160℃ were found to function normally within temperature and humidity sensors. All the cables operated normally in illuminance and electrocardiogram sensors. Thus, we believe that threads made of silver nanowire have sufficient electrical conductivity to be utilized as wearable sensors.

형상 기억 유연 소자의 내구성 평가에 관한 연구 (Durability of the Flexible Shape Memory Device)

  • 양희경;김해진;김대은
    • 정보저장시스템학회논문집
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    • 제11권2호
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    • pp.36-40
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    • 2015
  • The demand for flexible devices including solar cells, memories and batteries has increased rapidly over the past decades. In most flexible devices, polymer-based materials are used to enable the mechanical deformations such as bending or folding. Shape Memory Polymers (SMPs) is a high molecular compound polymer with flexibility and shape recovery characteristics. In this work, flexible shape memory device was fabricated by simply coating the conducting material, carbon nano-tube (CNT), on a shape memory polymer. Furthermore, durability of the device under various type of mechanical deformations was assessed. It is believed that the result of this work will aid in realization of a stretchable and wearable electronic device for practical applications.

비납계 BCTZ 압전세라믹과 압전폴리머로 제작된 하이브리드 나노복합체 기반의 플렉서블 에너지 하베스팅 소자 (Flexible Energy Harvesting Device based on Hybrid Piezoelectric Nanocomposite made of Lead-Free BCTZ Ceramic and Piezo-polymer)

  • 박성철;이재훈;김연규;박귀일
    • 한국전기전자재료학회논문지
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    • 제35권1호
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    • pp.72-79
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    • 2022
  • Piezoelectric energy harvesting technologies, which can be used to convert the electricity from the mechanical energy, have been developed in order to assist or power the wearable electronics. To realize non-toxic and biocompatible electronics, the lead-free (Ba0.85Ca0.15)(Ti0.90Zr0.10)O3 (BCTZ) nanoparticles (NPs) are being studied with a great attention as flexible energy harvesting device. Herein, piezoelectric hybrid nanocomposites were fabricated using BCTZ NPs-embedded poly(vinylidene fluoride-trifluoroethylene) [P(VDF-TrFE)] matrix to improve the performance of flexible energy harvester. Output performance of the fabricated energy device was investigated by the well-optimized measurement system during the periodically bending and releasing motions. The generated open-circuit voltage and the short-circuit current of the piezoelectric hybrid nanocomposite-based energy harvester reached up to ~15 V and ~1.1 ㎂, respectively; moreover, the instantaneous power of 3.5 ㎼ is determined from load voltage and current at the external load of 20 MΩ. This research is expected to cultivate a new approach to high-performance wearable self-powering electronics.