论文标题

QEVSEC:快速电动汽车通过动态无线电源传输固定充电

QEVSEC: Quick Electric Vehicle SEcure Charging via Dynamic Wireless Power Transfer

论文作者

Bianchi, Tommaso, Asokraj, Surudhi, Brighente, Alessandro, Conti, Mauro, Poovendran, Radha

论文摘要

动态无线电力传输(DWPT)可用于在驾驶时对电动汽车(EV)进行点播。但是,DWPT提出了许多安全和隐私问题。最近,研究人员表明,DWPT系统容易受到对抗攻击的影响。在EV充电方案中,攻击者可以防止授权客户收费,通过向受害者用户收费并跟踪目标车辆来获得免费充电。依靠集中解决方案的最先进的身份验证方案要么容易受到各种攻击的影响,要么具有很高的计算复杂性,这使得它们不适合动态场景。在本文中,我们提出了快速电动汽车安全充电(QEVSEC),这是一种用于电动汽车动态充电的新颖,安全且有效的身份验证协议。我们对QEVSEC的想法源自我们在最新协议中发现的多个漏洞,该协议允许跟踪用户活动,并且容易重播攻击。基于这些观察结果,提出的协议解决了这些问题,并通过仅在非常短的消息交换中使用原始加密操作来实现较低的计算复杂性。 QEVSEC提供了每次迭代的可伸缩性和降低的成本,从而降低了对网格所需的功率的影响。

Dynamic Wireless Power Transfer (DWPT) can be used for on-demand recharging of Electric Vehicles (EV) while driving. However, DWPT raises numerous security and privacy concerns. Recently, researchers demonstrated that DWPT systems are vulnerable to adversarial attacks. In an EV charging scenario, an attacker can prevent the authorized customer from charging, obtain a free charge by billing a victim user and track a target vehicle. State-of-the-art authentication schemes relying on centralized solutions are either vulnerable to various attacks or have high computational complexity, making them unsuitable for a dynamic scenario. In this paper, we propose Quick Electric Vehicle SEcure Charging (QEVSEC), a novel, secure, and efficient authentication protocol for the dynamic charging of EVs. Our idea for QEVSEC originates from multiple vulnerabilities we found in the state-of-the-art protocol that allows tracking of user activity and is susceptible to replay attacks. Based on these observations, the proposed protocol solves these issues and achieves lower computational complexity by using only primitive cryptographic operations in a very short message exchange. QEVSEC provides scalability and a reduced cost in each iteration, thus lowering the impact on the power needed from the grid.

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