Customized NFT Production and Trading Service Design

맞춤형 NFT 제작 및 거래 서비스 디자인 개발

  • HaeKyung Chung (Konkuk University, Visual Communication & Media Design) ;
  • JangHyok Ko (Sahmyook University, College of Science & Technology)
  • 정혜경 (건국대학교 미디어학부 시각영상디자인) ;
  • 고장혁 (삼육대학교 컴퓨터 메카트로닉스공학부)
  • Received : 2023.03.07
  • Accepted : 2023.03.20
  • Published : 2023.03.31

Abstract

NFT technology is mostly used to create digital drawings, characters, and items, and to simply buy and sell, but research and development to spread to various contents of NFT are somewhat marginal. Therefore, this study aims to solve the above-described problems. Depending on the exercise performance, it allows users to create and trade custom NFTs. In addition, it supports users to own customized digital works through exercise performance or to make money by trading them. Through it, the aim is to enhance users' positive interest in exercise and provide devices and methods for providing customized NFT creation and trading services that can help them develop exercise habits.

Keywords

Acknowledgement

이 논문은 2022년도 건국대학교 KU학술연구비 지원에 의한 논문임.

References

  1. Woo, Chang Hw., "Research Trend of OCA (Optically Clear additive) for Display Panel by Analysis of Patent and Papers Publication", Journal of The Korean Society of Semiconductor & Display Technology, Vol. 17, pp. 75-84, 2018.
  2. Choi, S., Lee, S., Ko, J., Kim, H., and Kim, J., "A study on the elements of business model innovation of non-fungible token blockchain game: Based on 'PlayDapp'case, an in-game digital asset distribution platform", Journal of the Korean Game Society Vol. 21, No. 2, pp. 123-137, 2021. https://doi.org/10.7583/JKGS.2021.21.2.123
  3. Myeong-seop Kim, Jeong-yeon Kim. "Classification of asset characteristics through NFT product transaction volume analysis", Journal of the Korean Society of Electronic Transactions, Vol. 27(4), pp. 107-119, 2022 https://doi.org/10.7838/jsebs.2022.27.4.107
  4. Hyung-won Kim, Youn-won Jung, In-sik Choi, Byungsun Choi, Donghyeon Choi, and Kun-kul Ryoo, "A Study on Electrostatic Discharging in Ultrapure and Electrolyzed waters using Kelvin's Thunderstorm Effect", J. Semiconductor & Display Technology, Vol.21(1), pp. 6-13, 2022.