• Title/Summary/Keyword: lilypad arduino

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School Uniforms Reforming Project for Safe Homecoming at Night (밤길 안전한 귀가를 위한 교복 리폼 프로젝트)

  • Lee, Eun-Jeong;Kim, Han-Bin;Choi, Jeong-Won;Lee, Young-Jun
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2014.01a
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    • pp.223-226
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    • 2014
  • 본 논문에서는 늦은 귀가시 밤길 교통사고의 위험에 쉽게 노출되는 학생들의 안전을 위해 교복을 개선하기 위한 발광체를 제작하는 데에 그 목적이 있다. 발광체 제작을 위한 적절한 도구로 Lilypad arduino를 활용하여 e-textile을 개발하였으며, e-textile을 개발을 위하여 기존 발광체의 문제점을 분석하고 제품의 전반적인 구상, 제품의 디자인, 회로설계, 프로그래밍 및 오류 검토, 제작의 과정을 걸쳐 발광체를 완성하였다. 결과적으로 제작된 발광체는 기존 재귀반사판과 같은 발광체에 비해시각적 인식률을 높일 수 있었고 더 다양한 디자인으로 표현이 가능했으며 부착 위치에 있어서도 기존 발광체보다 융통성을 갖추게 되었다.

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Case Study of E-Textile Club Activities using Lilypad: Focusing on Integrating Arts Craft and Technology (릴리패드 활용 E-Textile 동아리 수업 사례 연구: 미술과 테크놀로지의 융합을 중심으로)

  • Choi, Hyungshin;Park, Juyeon;So, Hyo-Jeong
    • Journal of The Korean Association of Information Education
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    • v.20 no.4
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    • pp.409-420
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    • 2016
  • In the digital age, children can express their ideas in both physical and digital environments. Electronic textile or e-textiles with Lilypad Arduino provides children with opportunities to explore design ideas and to realize their imagination into physical artefacts. This study aims to analyze the nature of activities and perceptions among 16 children in fifth and sixth grade in a primary school in Seoul who participated in the 12-week e-textile project. To this end, two teachers who taught the class evaluated student-created artefacts from technical, critical, creative and ethical perspectives, and interviewed seven students to extract concrete experiences. The contribution of this study is that it offers a case study of how e-textile programs integrating arts and technology can be implemented in primary school settings and provides implications for future research directions.

Development of LED wedding hairpin design using wearable technology (웨어러블 테크놀로지를 적용한 LED 웨딩 헤어핀 디자인 개발)

  • Yeonsoo Kim;Eunyoung Lee;Dong-Eun Kim
    • The Research Journal of the Costume Culture
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    • v.32 no.4
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    • pp.502-516
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    • 2024
  • Wearable technology is expected to maintain continuous marketability and prospects, with its scope gradually expanding beyond the fashion sector to encompass fashion accessories. Meanwhile, the wedding industry is currently reflecting consumer preferences that emphasize individuality and emotional connection. As wedding trends evolve, there is a growing interest in unique and differentiated wedding styles. Therefore, the purpose of this study is to create high-value designs by integrating wearable LED technology into wedding accessories and dresses to meet the emotional needs of modern consumers. To achieve this, we analyzed the LED wedding accessories currently available in the market. Based on the findings, we designed and developed new such accessories and dresses through planning, development, and production processes. First, the study found out that LED wedding accessories are gaining attention as high-value products. Second, a survey of the domestic market for LED wedding accessories highlighted the needs for wedding dress designs that can be paired with LED hairpins. Third, we used Lilypad Arduino's Lily Tiny to design and develop LED wedding hairpins and dresses through a production process. Finally, by styling LED wedding hairpins and dresses together, we demonstrated the potential in creating products that blend emotion and technology, in line with the current wearable technology trends. Overall, this study offers a fresh perspective on design development in wedding accessories.

Development and Application of a High School-University Linked Maker Education Program Using Smart Clothing Technology: Development of Emotional Eco-bag Applying E-textiles and Transfer Dyeing (스마트의류 테크놀로지를 적용한 고교-대학 연계 메이커교육 프로그램 개발과 적용: 전자섬유와 전사염을 적용한 감성에코백 개발)

  • Kang, Da-yae;Lee, Jung-soon
    • Science of Emotion and Sensibility
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    • v.25 no.1
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    • pp.129-142
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    • 2022
  • This study evaluates a program developed for a high school-university linked class. The program combines maker education and smart clothing technology, which has great potential. First, in the preparation stage, the dyeing design course incorporates the contents of previous studies on smart clothing and maker education. Second, in the development stage, a program was developed to make emotional eco-bags by applying the transfer dyeing technique using transfer paper for inkjet printers and smart clothing technology using conductivity thread and LED bulbs. Third, in the implementation stage, the class was offered to 17 high school students who want to major in clothing and textiles. Lastly, the class was evaluated. The program had a 4.95 satisfaction level as measures on a five-point scale. Furthermore, this paper suggested an advanced program with Lilypad Arduino. In conclusion, through this study, it was confirmed that the emotional eco-bag development program applied with conductive yarn and transfer dye could more easily produce smart clothing technology, thereby expanding the thinking of high school students regarding the clothing major.