Dushyant Kumar Yadav, Hemlal Sahu, Dharminder Chaudhary, Cheng-Chi Lee
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To ensure the authenticity of mobile services within IoV, we have proposed a robust authentic blockchain–based multisignature algorithm with Ethereum consensus mechanism. Blockchain's decentralized nature reduces the risk of single points of failure, making it more resilient against hacking and unauthorized access. In this system, all the transactions recorded on the blockchain are immutable, ensuring that the data remain accurate and tamper proof. This is crucial for maintaining trust in the information exchanged between vehicles. This also eliminates the need for a central authority, blockchain enables peer-to-peer interactions between vehicles, enhancing efficiency, and reducing latency. This security of the algorithm is based on short integer solution assumption can provide security even in the presence of quantum computers. The proposed algorithm is computationally efficient, and it uses <span></span><math>\n <semantics>\n <mrow>\n <mi>N</mi>\n </mrow>\n <annotation>$$ N $$</annotation>\n </semantics></math> th-degree truncated polynomial ring unit (NTRU)–generated lattice with simple polynomials multiplication over a finite field. 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This is crucial for maintaining trust in the information exchanged between vehicles. This also eliminates the need for a central authority, blockchain enables peer-to-peer interactions between vehicles, enhancing efficiency, and reducing latency. This security of the algorithm is based on short integer solution assumption can provide security even in the presence of quantum computers. The proposed algorithm is computationally efficient, and it uses <span></span><math>\\n <semantics>\\n <mrow>\\n <mi>N</mi>\\n </mrow>\\n <annotation>$$ N $$</annotation>\\n </semantics></math> th-degree truncated polynomial ring unit (NTRU)–generated lattice with simple polynomials multiplication over a finite field. 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引用次数: 0
摘要
车联网(IoV)已成为一种前景广阔的应用,能够提高运输效率并为驾驶员提供各种移动服务。这种 IoV 可实现车辆和基础设施之间的实时数据共享,从而改善交通流量、减少拥堵和优化路线。通过向车辆提供有关附近车辆、路况和潜在危险的实时信息,物联网技术可以大大降低事故发生的可能性,提高整体道路安全性。鉴于 IoV 的开放性、持续数据生产、分布式环境和自组织性质,它很容易受到许多恶意攻击。为了确保物联网中移动服务的真实性,我们提出了一种基于区块链的稳健真实的多签名算法,并采用以太坊共识机制。区块链的去中心化特性降低了单点故障的风险,使其更能抵御黑客攻击和未经授权的访问。在这个系统中,记录在区块链上的所有交易都是不可变的,从而确保了数据的准确性和防篡改性。这对于保持车辆间信息交换的信任度至关重要。这也消除了对中央机构的需求,区块链实现了车辆之间的点对点互动,提高了效率,减少了延迟。该算法的安全性基于短整数解假设,即使在量子计算机存在的情况下也能提供安全性。所提出的算法计算效率很高,它使用 N $ N $ th 度截断多项式环单元(NTRU)生成的晶格与有限域上的简单多项式相乘。结果证实,我们提出的方案能有效提高物联网环境下的安全性。
NTRU Lattice–Based Blockchain Consensus–Assisted Vehicle-to-Vehicle Authenticated Message Delivery in Internet of Vehicles
The Internet of Vehicles (IoV) has emerged as a promising application capable of enhancing transportation efficiency and providing a variety of mobile services to drivers. This IoV enables real-time data sharing among vehicles and infrastructure, allowing for better traffic flow, reduced congestion, and optimized routes. By providing vehicles with real-time information about nearby vehicles, road conditions, and potential hazards, IoV can significantly reduce the likelihood of accidents and improve overall road safety. Given the openness, continuous data production, distributed environment, and self-organizing nature of IoV, it is susceptible to numerous malicious attacks. To ensure the authenticity of mobile services within IoV, we have proposed a robust authentic blockchain–based multisignature algorithm with Ethereum consensus mechanism. Blockchain's decentralized nature reduces the risk of single points of failure, making it more resilient against hacking and unauthorized access. In this system, all the transactions recorded on the blockchain are immutable, ensuring that the data remain accurate and tamper proof. This is crucial for maintaining trust in the information exchanged between vehicles. This also eliminates the need for a central authority, blockchain enables peer-to-peer interactions between vehicles, enhancing efficiency, and reducing latency. This security of the algorithm is based on short integer solution assumption can provide security even in the presence of quantum computers. The proposed algorithm is computationally efficient, and it uses th-degree truncated polynomial ring unit (NTRU)–generated lattice with simple polynomials multiplication over a finite field. The results confirm that our proposed scheme is effective in enhancing security within the IoV environment.
期刊介绍:
The International Journal of Communication Systems provides a forum for R&D, open to researchers from all types of institutions and organisations worldwide, aimed at the increasingly important area of communication technology. The Journal''s emphasis is particularly on the issues impacting behaviour at the system, service and management levels. Published twelve times a year, it provides coverage of advances that have a significant potential to impact the immense technical and commercial opportunities in the communications sector. The International Journal of Communication Systems strives to select a balance of contributions that promotes technical innovation allied to practical relevance across the range of system types and issues.
The Journal addresses both public communication systems (Telecommunication, mobile, Internet, and Cable TV) and private systems (Intranets, enterprise networks, LANs, MANs, WANs). The following key areas and issues are regularly covered:
-Transmission/Switching/Distribution technologies (ATM, SDH, TCP/IP, routers, DSL, cable modems, VoD, VoIP, WDM, etc.)
-System control, network/service management
-Network and Internet protocols and standards
-Client-server, distributed and Web-based communication systems
-Broadband and multimedia systems and applications, with a focus on increased service variety and interactivity
-Trials of advanced systems and services; their implementation and evaluation
-Novel concepts and improvements in technique; their theoretical basis and performance analysis using measurement/testing, modelling and simulation
-Performance evaluation issues and methods.