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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Ring Signature-Based Conditional Privacy-Preserving Authentication in VANETs
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Ring Signature-Based Conditional Privacy-Preserving Authentication in VANETs

机译:戒指基于签名的条件隐私保留vanet中的保留身份验证

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Vehicular ad hoc networks (VANETs) consist of vehicles with high mobility that broadcasts delay-intolerant safety and informative messages frequently. The real identity of a vehicle needs to be kept private as these vehicles operate in an open and insecure network. A receiving vehicle must also authenticate the received messages before accepting or rejecting it. Additionally, the original identity of an authenticated vehicle must be discovered if it tries to obstruct the normal functioning of the network by transmitting the wrong messages. In this paper, a lightweight ring signature-based conditional privacy-preserving authentication (RCPPA) scheme is proposed to address the security issues in VANETs. In the proposed scheme, a vehicle gets a pseudonym from root trusted authority (RTA). If a vehicle performs a malicious action, then only RTA can reveal the original identity of the vehicle. A vehicle produces a ring signature to sign a message. Vehicles within the communication range verify this signature to ensure that the message is sent from an authenticated vehicle. Ring signature provides unconditional privacy to vehicles, but a pseudonym that is sent in the message is used by the RTA to reveal the real identity. The biggest advantage of this scheme is that it allows only authenticated vehicles to generate a ring signature and not any intruder without requiring any cooperation from any other vehicle. The results of the simulation show that the RCPPA scheme using a ring signature and pseudonym provides not only vehicle and message authentication but also non-repudiation through conditional privacy-preservation.
机译:车辆临时网络(VANET)由具有高移动性的车辆组成,经常播放延迟不宽容的安全性和信息性消息。当这些车辆在开放和不安全的网络中运行时,车辆的真实身份需要保持私密。接收车辆还必须在接受或拒绝之前验证所接收的消息。另外,如果通过发送错误的消息,必须发现经过认证的车辆的原始标识。本文提出了一种基于轻型环签名的条件保护保留认证(RCPPA)方案来解决VANET中的安全问题。在所提出的方案中,车辆从rootverted权限(RTA)获得假名。如果车辆执行恶意动作,则只允许RTA可以揭示车辆的原始身份。车辆产生戒指签名以签署消息。通信范围内的车辆验证此签名以确保消息从经过身份验证的车辆发送。戒指签名为车辆提供无条件隐私,但RTA将使用该消息中发送的假名来揭示真实标识。该方案的最大优点是它允许仅验证的车辆在不需要任何其他车辆的任何合作的情况下产生戒指签名而不是任何入侵者。仿真结果表明,使用戒指签名和假名的RCPPA方案不仅提供了车辆和消息认证,还提供了通过条件隐私保存的不可否认。

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