强化 IoV 安全性:用于连接车辆网络保护的新型安全加密算法 (OpCKEE)
Sahar Ebadinezhad1,2, Pierre Fabrice Nlend Bayemi3
1Department of Computer Information Systems, Near East University, Nicosia 99138, Northern Cyprus, Turkey.
Sensors (Basel, Switzerland)
|February 13, 2026
概括
汽车互联网系统面临安全挑战. 一个新的优化无证钥匙封装加密算法增强了通信安全性,确保了数据保护和系统完整性.
科学领域:
- 网络安全 网络安全
- 网络安全 网络安全
- 密码学 密码学 密码学 密码学
背景情况:
- 汽车互联网 (IoV) 市场正在迅速扩大,预计到2028年将达到3696.1亿美元.
- 在监管,可扩展性,数据管理,连接性,互操作性,隐私和安全方面,IoV系统面临重大挑战.
- 加强通信安全对于 IoV 的广泛采用和可靠运行至关重要.
研究的目的:
- 解决车辆互联网系统中的安全漏洞.
- 提出和评估一种用于安全 IoV 通信的新型加密算法.
- 确保 IoV 网络中的数据的真实性,保密性,完整性和不可否认性.
主要方法:
- 实现了一个安全的加密算法:优化无证书密钥封装加密.
- 融合了密钥隔离密码系统和密码密钥封装机制.
- 使用AVISPA 1.1版本软件进行正式安全分析和非正式分析.
主要成果:
- 正式分析证实了该协议的安全性和安全性.
- 非正式分析表明,该算法能够确保真实性,保密性,完整性和不可否认性.
- 与现有方法相比,拟议的算法提供了略有改善的计算和通信成本.
结论:
- 优化无证书密钥封装加密算法有效地提高了车辆互联网系统中的通信安全性.
- 该算法提供了对各种攻击的强有力的保护,确保数据完整性和隐私.
- 这种加密解决方案有助于安全开发和部署不断增长的汽车互联网生态系统.
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