A secure transaction and smart contract architecture for internet of vehicles.

IF 2.6 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
Hua-Yi Lin
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Abstract

Recently, with the popularity of Internet of vehicles (IoV), there is an increasing market demand for integrating blockchain technology and smart contracts in electric vehicles. By utilizing distributed blockchain and smart contract technology, it provides data integrity preservation, traceability, and prevention of forgery. These features can be effectively used in the automated charging system. As a result, IoV can utilize blockchain and smart contract technologies to facilitate seamless payment for charging fees, tolls, parking fees, online shopping and other associated expenses without the need for intermediaries. However, since blockchain and smart contracts operate in an open internet environment, there is a risk of tampering with transaction records. Therefore, enhancing security becomes a crucial concern. The main aim of this study is to emphasize the growing significance of securing transactions and smart contracts in an open transmission environment to prevent potential damage or alteration.In order to achieve the implementation of secure smart contracts within a resource-constrained IoV, this study investigates various cryptographic mechanisms and realizes the elliptic curve cryptosystem (ECC) is widely recognized for providing strong security with shorter key lengths compared to other public key cryptography methods. This makes it ideal for environments with limited resources. Furthermore, in order to enhance the performance of smart contracts, this study proposes a cloud server architecture for parallel storage of smart contracts to improve access speed. Additionally, we introduce an automated trading framework for smart contracts that operates without human intervention.Finally, this study uses ECC to ensure the secure transmission of transaction data among the vehicle, base station, and cloud server, as well as to provide mutual verification of identities across all entities involved in the operation. As a result, this study proposes a secure architecture for blockchain and smart contracts that can autonomously initiate transactions while ensuring secure transmission and protection in the IoV.

车联网的安全交易和智能合约架构。
最近,随着车联网(IoV)的普及,将区块链技术和智能合约集成到电动汽车中的市场需求越来越大。利用分布式区块链和智能合约技术,可以实现数据完整性保护、可追溯性和防伪。这些功能可以有效地应用于自动充电系统。因此,IoV 可以利用区块链和智能合约技术促进充电费、通行费、停车费、网上购物和其他相关费用的无缝支付,而无需中间商。然而,由于区块链和智能合约在开放的互联网环境中运行,交易记录存在被篡改的风险。因此,加强安全性成为一个至关重要的问题。本研究的主要目的是强调在开放传输环境中确保交易和智能合约安全以防止潜在破坏或篡改的日益重要的意义。为了在资源受限的物联网环境中实现安全智能合约的实施,本研究调查了各种加密机制,发现椭圆曲线加密系统(ECC)与其他公钥加密方法相比,以较短的密钥长度提供了强大的安全性,这一点已得到广泛认可。因此,它非常适合资源有限的环境。此外,为了提高智能合约的性能,本研究提出了一种用于并行存储智能合约的云服务器架构,以提高访问速度。最后,本研究使用 ECC 来确保交易数据在车辆、基站和云服务器之间的安全传输,并提供参与操作的所有实体之间的身份相互验证。因此,本研究提出了一种区块链和智能合约的安全架构,可以自主启动交易,同时确保物联网中的安全传输和保护。
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
Science Progress
Science Progress Multidisciplinary-Multidisciplinary
CiteScore
3.80
自引率
0.00%
发文量
119
期刊介绍: Science Progress has for over 100 years been a highly regarded review publication in science, technology and medicine. Its objective is to excite the readers'' interest in areas with which they may not be fully familiar but which could facilitate their interest, or even activity, in a cognate field.
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