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New and Simple Offline Authentication Approach using Time-based One-time Password with Biometric for Car Sharing Vehicles

机译:新的和简单的离线身份验证方法使用基于时间的一次性密码,用于汽车共享车辆的生物识别

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Car sharing provides consumers a flexible peer-to-peer service or station service. However, the connectivity problems are pervasive in remote areas and places with multi-path obstructions with no clear line-of-sight (LoS). In this scenario, availability of the network can be intermittent and is not always guaranteed, especially for untethered wireless networks consisting of mobile vehicles. A conventional online authentication scheme; therefore, is not an effective solution when it comes to securing the vehicles. Also, the malicious attackers could gain access to the vehicles using a replay of the user signal, that is known as a “replay attack” In order to provide an effective authentication approach, we propose an offline authentication approach based on a Time-based One-time Password (TOTP) algorithm. OTP is chosen due to its protection against the notorious replay attack that is popular against keyless start vehicles. It also utilized an additional security biometric factor to enhance the security of the driver’s authentication. The new proposed scheme is divided into online and offline schemes to provide a secure solution. The novelty is that it can enable the authorized drivers to securely start and operate during offline duration just by using their mobile devices. The other car-sharing maintenance operations including registration, booking, telematics monitoring, and location tracking can be performed or synchronized whenever the network is back in connection and reachable within the wireless coverage area.
机译:汽车分享为消费者提供灵活的点对点服务或车站服务。但是,连接问题在偏远地区和具有多路径障碍物的地方普遍存在,没有明确的视线(LOS)。在这种情况下,网络的可用性可以是间歇性的,并且并不总是保证,特别是对于由移动车辆组成的不受限制的无线网络。传统的在线身份验证方案;因此,在固定车辆时不是一个有效的解决方案。此外,恶意攻击者可以使用用户信号的重放来获得车辆的访问,即被称为“重放攻击”,以便提供有效的认证方法,我们提出了一种基于时间的脱机认证方法 - 时间密码(TOTP)算法。选择OTP由于其防止对无钥匙启动车辆流行的臭名昭着的重播攻击。它还利用了额外的安全生物识别因子来增强驾驶员身份验证的安全性。新的拟议方案分为在线和离线方案,以提供安全的解决方案。新颖性是它可以使授权驱动程序能够在离线持续时间内安全地启动和运行,仅使用其移动设备。只要网络重新连接到无线覆盖区域内,就可以执行或同步包括注册,预订,远程处理监控和位置跟踪的其他汽车共享维护操作,包括或同步。

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