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TSAF: Tamper-resistant and scalable mutual authentication framework for plug-in EV charging

机译:TSAF:用于插件EV充电的防篡改和可扩展的相互认证框架

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Aligned with the roll-out of plug-in Electric Vehicles (EV), a key area of research to enable high EV penetration is a secure and efficient charging system for EV batteries. In recent literature on EVs, reliable and cost-efficient grid operations under high EV penetrations assume the need of EV charging load control. In this scenario, EV charging (and discharging) must be adapted in real time to current grid constraints and sudden grid status changes. However, for realizing these load control functions, grids and EVs should trust each other before executing the operation. Whenever an EV is plugged into a grid for charging, it must be authenticated by the grid; otherwise, EVs and grids are open to security threats that could result in serious safety hazards and billing issues. In this paper, we first view the EV authentication problem as a mutual-authentication problem within a mobile and hostile machine-to-machine (M2M) communication setting. We describe a mutual authentication system tamper-resistant and scalable mutual authentication framework TSAF that can support large-scale grid-connected EV charging. The proposed TSAF is based on two key notions, authentication token (AT) for stateless1 authentications and key obfuscation block (KoB) for protecting authentication key information of client devices. Note that TSAF is the first proposal that addresses mobility, tamper-resistance, key exposure resilience, low complexity, and ease of management for plug-in EV charging.
机译:与推出的插入式电动车(EV)对齐,这是一个能够实现高EV渗透的关键研究领域,是EV电池的安全有效的充电系统。在最近的EVS文献中,在高EV渗透下可靠且具有成本高效的电网操作假设需要EV充电负荷控制。在这种情况下,EV充电(和放电)必须实时调整到当前的电网约束和突然网格状态变化。但是,为了实现这些负载控制功能,网格和EVS应该在执行操作之前相互信任。每当EV插入电网时,必须通过网格进行认证;否则,EVS和网格对安全威胁开放,可能导致严重的安全危险和计费问题。在本文中,我们首先将EV身份验证问题视为移动和敌对机器到机器(M2M)通信设置中的互验证问题。我们描述了一种可抵抗抗篡改和可扩展的相互认证框架TSAF,可支持大规模网格连接的EV充电。所提出的TSAF基于两个关键概念,用于无状态 1 认证和密钥混淆块(Kob)的身份验证令牌(at),用于保护客户端设备的身份验证密钥信息。请注意,TSAF是解决移动,防篡改,关键曝光弹性,低复杂性和插件EV充电管理的易于管理的第一个提案。

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