设计 CSKAS-VANET 模型,利用 RBMA 和签名加密实现稳定聚类和验证方案

M. Gayathri, C. Gomathy
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引用次数: 0

摘要

本文开发了一种由公钥基础设施支持的系统认证模型,为车载网络(VANET)提供基本的安全功能。VANET 是一种新兴技术,可提供智能交通系统。专用短程通信用于无线传播信息。通信可能会遭到黑客攻击,信息也可能被窃取或伪造。因此,验证通信在 VANET 环境中至关重要。信任、身份验证、隐私和安全等一些参数面临着高风险。本文提出了一种具有安全认证和基于信任的聚类机制的 VANET,以提供稳定和安全的通信。首先,使用受限波尔兹曼机学习算法(RBMA)来选择簇头,簇头的选择取决于信任度、车辆寿命和缓冲水平。然后,形成簇成员,再进行分组。Diffie-Hellman 超椭圆曲线加密算法和加密哈希函数用于 VANET 中的安全通信。因此,密钥协议策略的重要组成部分就是这种签名加密机制,它将提供卓越的身份验证。通过介质访问协议层,所有这些安全特性都会得到更新。所提出的聚类加密密钥协议方案(CSKAS)方法降低了时间复杂性,提高了数据包传输率,这对提供稳定、安全的通信至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of CSKAS-VANET model for stable clustering and authentication scheme using RBMA and signcryption
A public key infrastructure-enabled system authentication model is developed to provide essential security functions for Vehicular ad hoc networks (VANETs). An intelligent transportation system is provided by VANET, an emerging technology. Dedicated short-range communication is used to disseminate messages wirelessly. Communications may be hacked, and messages can be stolen or fabricated. Hence, authenticated communication is crucial in the VANET environment. Some parameters such as trust, authentication, privacy, and security are at high risk. This article suggests a VANET with secure authentication and trust-based clustering mechanisms to provide stable and secure communication. Initially, the Restricted Boltzmann Machine learning algorithm (RBMA) is used to select the cluster head, which depends upon trust, vehicle lifetime, and buffer level. Then, cluster members are formed, followed by grouping. Diffie–Hellman Hyperelliptic Curve Cryptography and cryptographic hash functions are used by signcryption for secure communication in VANET. Therefore, the essential component of the key agreement strategy that will give superior authentication is this signcryption mechanism. Over the medium access protocol layer, all of these security characteristics are updated. The proposed method of clustering signcryption key agreement scheme (CSKAS) approach reduces time complexity and increases packet delivery ratio which is vital in providing stable, secure communication.
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