为5G无人机通信设计抗量子加密与智能检测方案
Secured Communication Schemes for UAVs in 5G: CRYSTALS-Kyber and IDS
- 融合AES、ECC与抗量子的CRYSTALS-Kyber实现混合加密
- CRYSTALS-Kyber性能开销低,适配资源受限无人机
- AI驱动的入侵检测系统在复杂场景中达97.33%准确率
本文提出一种面向5G网络中无人机(UAV)与地面站的安全通信架构,解决网络安全关键挑战。该方案将高级加密标准(AES)与椭圆曲线密码学(ECC)结合,引入CRYSTALS-Kyber进行密钥封装,形成混合加密机制。通过集成CRYSTALS-Kyber,有效缓解了ECC对量子攻击的脆弱性,提供抗量子能力。系统基于服务器-客户端模型,无人机作为客户端,地面站为服务器。在VPN和5G环境中进行了严格评估,实验表明:CRYSTALS-Kyber在抵御量子威胁的同时,性能开销极小,非常适合资源受限的无人机。此外,架构集成基于人工智能的入侵检测系统(IDS),在多种模型中表现优异,其中XGBoost在高负载场景下准确率达97.33%,AUC为0.94。结果表明,结合抗量子加密与AI驱动的IDS,可构建高效、可扩展且安全的无人机通信框架,尤其适用于5G的高性能要求环境。
原文摘要 · Abstract (English)
This paper introduces a secure communication architecture for Unmanned Aerial Vehicles (UAVs) and ground stations in 5G networks, addressing critical challenges in network security. The proposed solution integrates the Advanced Encryption Standard (AES) with Elliptic Curve Cryptography (ECC) and CRYSTALS-Kyber for key encapsulation, offering a hybrid cryptographic approach. By incorporating CRYSTALS-Kyber, the framework mitigates vulnerabilities in ECC against quantum attacks, positioning it as a quantum-resistant alternative. The architecture is based on a server-client model, with UAVs functioning as clients and the ground station acting as the server. The system was rigorously evaluated in both VPN and 5G environments. Experimental results confirm that CRYSTALS-Kyber delivers strong protection against quantum threats with minimal performance overhead, making it highly suitable for UAVs with resource constraints. Moreover, the proposed architecture integrates an Artificial Intelligence (AI)-based Intrusion Detection System (IDS) to further enhance security. In performance evaluations, the IDS demonstrated strong results across multiple models with XGBoost, particularly in more demanding scenarios, outperforming other models with an accuracy of 97.33% and an AUC of 0.94. These findings underscore the potential of combining quantum-resistant encryption mechanisms with AI-driven IDS to create a robust, scalable, and secure communication framework for UAV networks, particularly within the high-performance requirements of 5G environments.
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