Survey on blockchain-based non-fungible tokens: History, technologies, standards, and open challenges

IF 1.5 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS International Journal of Network Management Pub Date : 2023-07-19 DOI:10.1002/nem.2245
Kyungchan Ko, Taeyeol Jeong, Jongsoo Woo, James Won-Ki Hong
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引用次数: 1

Abstract

This paper presents a survey of non-fungible tokens (NFTs), including its history, technologies, standards, and challenges in their development. An NFT is a unique digital entity that is created and maintained using blockchain technology. Each NFT is identified using a unique smart contract and a token ID, so the whole history of the NFT can be globally identified by its address and token ID. The blockchain information indelibly identifies the current owner of any asset, previous owners, and original creator. NFTs are used to manage ownership of digital and physical assets and cryptocurrencies. The prices of popular NFTs have become very high, and the market for them has overheated in recent years. NFT technology and its ecosystem have evolved since Quantum, the first NFT, was stored in the Namecoin blockchain. Ethereum has become the main platform for NFT projects because it provides support for smart contracts. Currently, almost all NFT projects are launched on the Ethereum blockchain. NFT has two major standards called ERC-721 and ERC-1155, which have had important functions in the development of NFT. Starting with these two standards, other standards for NFT continue to emerge; they expand the functionality of NFT such as by adding utility. However, NFT is a very early technology, and it has not been long after the NFT concept was created and used. So there are several challenges for further improving NFT technology, in terms of usability, interoperability, and evolution. This paper presents a survey of NFT, including its history, technologies, standards, and challenges of NFT.

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基于区块链的不可替代代币调查:历史、技术、标准和公开挑战
本文介绍了不可篡改代币(NFT),包括其历史、技术、标准和发展中的挑战。NFT 是使用区块链技术创建和维护的唯一数字实体。每个 NFT 都使用唯一的智能合约和代币 ID 进行识别,因此 NFT 的整个历史都可以通过其地址和代币 ID 进行全球识别。区块链信息可以不可磨灭地识别任何资产的当前所有者、先前所有者和原始创建者。NFT 用于管理数字资产、实物资产和加密货币的所有权。近年来,流行的 NFT 价格变得非常高,市场已经过热。自首个 NFT 量子存储在 Namecoin 区块链中以来,NFT 技术及其生态系统不断发展。以太坊已成为 NFT 项目的主要平台,因为它提供了对智能合约的支持。目前,几乎所有的 NFT 项目都是在以太坊区块链上启动的。NFT 有两个主要标准,分别称为 ERC-721 和 ERC-1155,它们在 NFT 的发展过程中发挥了重要作用。从这两个标准开始,NFT 的其他标准不断涌现;它们扩展了 NFT 的功能,例如增加了实用性。然而,NFT 是一项非常早期的技术,NFT 概念产生和使用的时间并不长。因此,要进一步改进 NFT 技术,在可用性、互操作性和演进方面还面临着一些挑战。本文介绍了 NFT 的概况,包括 NFT 的历史、技术、标准和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Network Management
International Journal of Network Management COMPUTER SCIENCE, INFORMATION SYSTEMS-TELECOMMUNICATIONS
CiteScore
5.10
自引率
6.70%
发文量
25
审稿时长
>12 weeks
期刊介绍: Modern computer networks and communication systems are increasing in size, scope, and heterogeneity. The promise of a single end-to-end technology has not been realized and likely never will occur. The decreasing cost of bandwidth is increasing the possible applications of computer networks and communication systems to entirely new domains. Problems in integrating heterogeneous wired and wireless technologies, ensuring security and quality of service, and reliably operating large-scale systems including the inclusion of cloud computing have all emerged as important topics. The one constant is the need for network management. Challenges in network management have never been greater than they are today. The International Journal of Network Management is the forum for researchers, developers, and practitioners in network management to present their work to an international audience. The journal is dedicated to the dissemination of information, which will enable improved management, operation, and maintenance of computer networks and communication systems. The journal is peer reviewed and publishes original papers (both theoretical and experimental) by leading researchers, practitioners, and consultants from universities, research laboratories, and companies around the world. Issues with thematic or guest-edited special topics typically occur several times per year. Topic areas for the journal are largely defined by the taxonomy for network and service management developed by IFIP WG6.6, together with IEEE-CNOM, the IRTF-NMRG and the Emanics Network of Excellence.
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