• Title/Summary/Keyword: Smart photonic clothing

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A study on the modular design of smart photonic sports clothing based on optical fiber technology (광섬유 기반 스마트 포토닉 스포츠 의류의 모듈화 디자인 연구)

  • Park, Soo-Jin;Park, Sun-Hyeong;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.12 no.4
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    • pp.393-402
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    • 2009
  • The objectives of this study is to search for systematic modular design methods for smart photonic sports clothing based on light emitting optical fiber technology related to smart photonic clothing, and to present a variety of modular design models based on optical fiber and light emitting module assembly technology, both of which stand on the basis of body measurements. To achieve the objectives, this paper firstly reviewed the concept of smart photonic clothing and related technologies, and an examination of the concepts of modularization and its designs, as well as examples of modularization used in various fields. To decide the size and attachment point of optical fiber and light emitting modules, the study considered the close connection between modularization and body measurements. Along with body measurements, to derive the most suitable region to attach the optical fiber and light emitting modules, appropriate attachment locations for computing devices and regions which are marginally affected by body movements, were analyzed. On the basis of the results, a modular model of a sports jacket with smart photonic functions was designed and presented, with the focus on the wearer's safety and protection function, which was judged to be the most needed and appropriate function among the three functions of smart photonic clothing related to sports clothing. The results of this study is expected to be useful as basic data for future smart photonic clothing design research.

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Designing User Participation Smart Photonic Clothing Prototype Using Arduino (아두이노를 활용한 사용자 참여형 스마트 포토닉 의류 프로토타입 설계)

  • An, Mi-hwa;Lim, Ho-sun
    • Fashion & Textile Research Journal
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    • v.22 no.1
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    • pp.55-65
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    • 2020
  • Smart photonic clothing integrates light emitting technology inside and outside of the garment and integrates it as a fashion product. It expresses digital color that radiates light outside the body that expands the functionality of the clothing as well as makes new and various attempts visually. It is also is gradually expanding into a new area of fashion. LED, one of the digital color output devices, is a light emitting device that is suitable for presenting consumer customized designs in that the patterns and colors of clothes can be modified as desired by utilizing computer technology such as program coding. LED technology that can realize various digital colors is actively applied in various industrial design fields, but there are few previous studies on smart clothes using LED color in Korean fashion fields. Therefore, this study develops a prototype of a customized LED smart photonic garment that allows the user to directly participate in the color implementation of clothing and select a digital color suitable for the desired function. The LED module was designed to be detachable from clothing and made using a 256-pixel LED matrix. Various coding patterns of the LED were designed using the coding change of Arduino program.

A Study of Emotion evoked by colors and changes of color - Focused on the smart wear (스마트 의류에서의 색과 색 변화에 따른 정서)

  • Cho, Woon-Jung;Hyun, Ju-Ha;Kim, Soo-Hyun;Eom, Ki-Min;Han, Kwang-Hee
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.1166-1170
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    • 2009
  • Colors convey emotions and feelings. This study investigated human's emotional responses on both single colors and changes of colors in clothing. From experiment 1, we found that the important possibility that color emotion also can apply on photonic clothing and it can play a significant role in expressing emotions. We also found there are differences in emotional dimensions between web colors and photonic colors.

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Development and Evaluation of Children's Smart Photonic Safety Clothing ( 어린이의 스마트 포토닉 안전의복의 개발 및 평가)

  • Soon-Ja Park;Dae-jin, Ko;Sung-eun, Jang
    • Science of Emotion and Sensibility
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    • v.26 no.2
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    • pp.129-140
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    • 2023
  • Following ISO 20471, in this study, first, two sets of safety clothes and safety vests were made by designing and attaching animal and bird patterns preferred by children to retroreflective films and black fabrics on those fluorescent fabrics and retroreflective materials prescribed by international standards. Second, by mounting a smart photonic device on the safety clothing so that the body can be recognized from a distance even without an ambient light source at night, children can emit three types of light depending on the situation with just one-touch of the button. From a result of comparison with visibility a day and night by dressing a mannequin in the made smart safety clothing, the difference in visibility was evident at night, it was confirmed that we can see the figure of a person even at a distance of approximately 70 m. Therefore, it is expected to contribute to the prevention of traffic and other accidents on the road, as the drivers driving at night or in bad weather can recognize a person from a distance. Third, in case of the energy is exhausted and cannot maintain the stability of the light-emitting function of the optical faber, we can use energy harvesting device, and the light-emitting time will be extended. As a result it comes up to emit light stably for a long time. And this prove that smart photonic safety clothing can also be used for night workers. Therefore, optical fiber safety clothing is expected to be highly wearable not only in real life but also in dark industrial sites due to stable charging by applying the energy harvesting provided by solar cells.

The Extended Technology Acceptance Model According to Smart Clothing Types (스마트 의류제품 유형에 따른 확장된 혁신기술수용모델)

  • Chae, Jin-Mie
    • Korean Journal of Human Ecology
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    • v.19 no.2
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    • pp.375-387
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    • 2010
  • The Technology Acceptance Model (TAM) presented by Davis (1989) has been regarded as highly explanatory as well as the clearest model in explaining consumers' adoption of innovative technology or products. Existing studies have expanded the model by adding related external variables to improve the explanation depending on the type of innovative technology. This study expanded TAM by adding two more variables, namely consumers' technology innovation and clothing involvement considering the feature of smart clothing. The objectives of this study are as follows: 1. to suggest the extended TAM in explaining the adoption process of smart clothing, 2. to verify the differences in the path hypotheses according to the type of smart clothing. A total of 815 effective samples were collected from adults over 20 years old, and AMOS 5.0 package was employed for data analysis. As a result, it was proved that the extended TAM was appropriate for explaining the process of adopting smart clothing according to the path hypotheses of smart clothing types. Technology innovation and clothing involvement were confirmed as antecedent variables in affecting TAM. The perceived usefulness appeared to be a more crucial variable than the perceived ease of use and attitude was found to be an important parameter in adopting smart clothing. Considering the path hypotheses of MP3 playing clothes, perceived usefulness had a direct influence on acceptance intention unlike other types of smart clothing. As for photonic clothes, the influence of perceived ease of use on attitude was supported while it was rejected in the case of MP3 playing clothes and sensing sportswear.

A Suggestion of Guideline for designing of logo type for Apparel products based on the technology of flexible plastic optical fiber (유연 광섬유 기술을 적용한 의류 제품용 로고 디자인 방향의 제시)

  • Kim, Nam-Hee;Yang, Jin-Hee;Hong, Soon-Kyo;Hong, Suk-Il;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.15 no.4
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    • pp.469-476
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    • 2012
  • The purpose of this study is to derive design guideline for logo design development of smart clothing using flexible plastic optical fiber. In a criterion of guideline derivation for logo design, the first, it is a question of whether it indicates an appropriate degree of brightness across the front of flexible plastic optical fiber. The second, it is a question of whether it indicates relatively an uniform brightness characteristic across the front of flexible plastic optical fiber. For this, the brightness characteristic of flexible plastic optical fiber according to the angle changes and the length of flexible plastic optical fiber was analyzed by the 'Experiment 1'. To deduce guideline for the logo design of the actual garment, the brightness characteristic of flexible plastic optical fiber about the main morpheme of the capital letter of alphabet was analyzed by the 'Experiment 2'. Based on the results of the two experiment, this study derived design guideline and limitations for logo design of smart clothing visualized by the flexible plastic optical fiber.

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A Study on the Logo Design for Clothing in Application of the Flexible Optical Fiber with Three-Colors of LED Light Source (3색 LED와 유연 광섬유를 적용한 의류용 로고 디자인 연구)

  • Shin, Hye Young;Lee, Joo-Hyeon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.37 no.4
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    • pp.482-490
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    • 2013
  • This study suggests a suitable logo design application of a three colors LED light source and flexible plastic optical fiber (POF). In this study, characteristic relevant brightness of (according to the embodiment conditions of the flexible POF for logo design) for smart clothing were analyzed through two experiments. The suitable conditions of the logo design for three colors of light source were observed in 'Experiment 1'. The angle of $80^{\circ}$ to $100^{\circ}$ and the length of 8cm to 16cm appeared a more suitable condition for green-colored and red-colored light sources. The angle of $80^{\circ}$ to $100^{\circ}$ at a length of 8cm to 12cm appeared a more suitable condition for a blue-colored light source. In 'Experiment 2', a 'Klavika' in small letter was selected as suitable logo design for the application POF. The alphabet was separated by a morpheme, which is the minimal linguistic unit. All alphabets were classified into sixteen morphemes. The luminance of fourteen morphemes (realized by the embroidery method) were measured and analyzed. Subsequently, eight morphemes appeared to show a relatively equal luminance of $3-4cd/m^2$ in a green-colored light source, $2-3cd/m^2$ in red-colored light source, and $2cd/m^2$ in a blue-colored light source. Four of the fourteen morphemes, showed a 20% brighter level of luminance compared to the eight morphemes above, the cast of combination of green or red light source. This result indicates that a flexible POF with 20% less luminance are believed more suitable for four morphemes combined with a green or red light source. The results of this study provide fundamental data for further approaches to clothing logo design for the application of a flexible POF.

Luminescence effects of POF-based Flexible Textile by post-treated Optic illuminate (측광 후처리 가공에 의한 유연 광직물의 발광 효과)

  • Yang, Eun-Kyung;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.14 no.4
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    • pp.495-502
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    • 2011
  • The plastic optical fiber has been previously known to have the limits in fabrication and care, due to its lack of flexibility and durability. Recently, an innovative technology of 'water-resistant & flexible optical fiber', in which the surface of etched POF(i.e., plastic optical fiber) is to be coated with a type of synthetic resin, has been developed. In this study, the post-treated POF-based flexible textiles were evaluated in terms of luminance, physical visibility and perceived visibility, according to the fabric lengths and colors of the light source. The POF-based flexible textile with 10cm fabric length and green light source appeared to show relatively higher illuminating effects. The maximum distance for perceived visibility of the POF-based flexible textiles was found to be 100m. Therefore, the results of this study are expected to be utilized as a fundamental for the further studies to develop the digital color clothing with application of POF-based flexible textile.

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An Exploratory Study on Luminescent Properties and the Relevant Applications of POF-based Flexible Textile Display for Mountaineer Wear with Safe-guard Function (안전보호 기능의 산악복을 위한 유연 광섬유 직물 디스플레이의 발광특성 및 적용에 관한 탐색적 연구)

  • Kim, Jin-Sun;Park, Soo-Jin;Kim, Yu-Ji;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.14 no.1
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    • pp.165-174
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    • 2011
  • Recent years have witnessed that IT-convergence technology has become the most important issue in the global market. Along with this trend, demand for PSS(i.e., Product-Service Systems) design has been rapidly increased in the smart clothing market. A case of the PSS design research, this study aimed to identify optimum conditions for weaving of POF-based flexible textile display(abbreviated as "PFTD") for mountaineer wear with safe-guard function regarding luminescent properties. Based on the findings regarding the optimum weaving condition of PFTD, several designs of mountaineer wear were suggested in this study. A total of 15 PFTD samples were prepared under various weaving conditions of weave structures and density of POF, and the luminance values of each sample were measured. As the results, the types of PFTD with structures and density of 'satin 3:1', 'satin 2:1', 'twill 3:1' and 'twill 2:1' indicated relatively higher luminescence. And based on the results and recent sports fashion trends, two suited mountaineering wears applying PFTD were illustrated in this study.

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