arXiv:2508.19465cs.CRcs.AI2025-08

用AI动态认证增强电动车充电安全,防克隆和中继攻击

Addressing Weak Authentication like RFID, NFC in EVs and EVCs using AI-powered Adaptive Authentication

  • 结合机器学习与行为分析,实现持续动态验证
  • 可检测克隆、中继等攻击,提升系统整体安全性
  • 适合关注智能交通与车联网安全的研究者

电动汽车(EV)和电动车辆充电系统(EVC)的快速发展带来了新的网络安全挑战,尤其体现在保护车辆、用户和能源基础设施的认证协议上。尽管广泛用于便捷性,传统的射频识别(RFID)和近场通信(NFC)机制依赖静态标识符和弱加密,极易遭受克隆、中继攻击和信号窃听。本研究提出一种基于人工智能的自适应认证框架,融合机器学习、异常检测、行为分析与上下文风险评估,以应对这些缺陷。该框架遵循零信任架构原则,强调持续验证、最小权限访问和安全通信。通过全面文献综述,研究评估了现有漏洞,并突出人工智能驱动的解决方案,提供可扩展、强韧且主动防御的防护能力。研究结论表明,采用人工智能驱动的自适应认证是保障未来电动出行安全、强化生态系统数字信任的战略必要。

原文摘要 · Abstract (English)

The rapid expansion of the Electric Vehicles (EVs) and Electric Vehicle Charging Systems (EVCs) has introduced new cybersecurity challenges, specifically in authentication protocols that protect vehicles, users, and energy infrastructure. Although widely adopted for convenience, traditional authentication mechanisms like Radio Frequency Identification (RFID) and Near Field Communication (NFC) rely on static identifiers and weak encryption, making them highly vulnerable to attack vectors such as cloning, relay attacks, and signal interception. This study explores an AI-powered adaptive authentication framework designed to overcome these shortcomings by integrating machine learning, anomaly detection, behavioral analytics, and contextual risk assessment. Grounded in the principles of Zero Trust Architecture, the proposed framework emphasizes continuous verification, least privilege access, and secure communication. Through a comprehensive literature review, this research evaluates current vulnerabilities and highlights AI-driven solutions to provide a scalable, resilient, and proactive defense. Ultimately, the research findings conclude that adopting AI-powered adaptive authentication is a strategic imperative for securing the future of electric mobility and strengthening digital trust across the ecosystem. Keywords: weak authentication, RFID, NFC, ML, AI-powered adaptive authentication, relay attacks, cloning, eavesdropping, MITM attacks, Zero Trust Architecture

电动车安全AI认证零信任身份验证

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