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Clone-resistant vehicular RKE by deploying SUC

机译:部署SUC的抗克隆车辆RKE

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Many automotive Remote Keyless Entry (RKE) systems have been successfully attacked in the last few years. The security of RKE systems is still a sensitive and crucial issue for vehicular industry. The problem needs to be essentially addressed by the fundamental fabrication weakness namely: "the manufacture can clone his own fabricated keys" and create equal units. This should not be possible. The fact that: "the only safe secret is the one which nobody knows" leads to proposing the fabrication of physically "Secret Unknown Cipher" (SUC) to serve as a clone-resistant security anchor (module) for the RKE system. Each fabricated key, in its ultimate case, is then equivalent to an individual unclonable DNA-like biological entity. We preset a protocol exhibiting mutual authentication properties to manage a complete RKE system. It is based on a digital hardware token incorporating an SUC module designed to fit to the vehicular industrial mass-production environment at reasonable costs.
机译:在过去的几年中,许多汽车远程无钥匙进入(RKE)系统已被成功攻击。对于汽车行业来说,RKE系统的安全性仍然是一个敏感而关键的问题。这个问题需要从根本上解决制造上的弱点,即:“制造商可以克隆他自己的制造钥匙”并创建相等的单元。这应该是不可能的。 “唯一的安全秘密是没人知道的秘密”这一事实导致提议制造物理上的“秘密未知密码”(SUC)以用作RKE系统的抗克隆安全锚(模块)。在最终情况下,每个制造的钥匙都相当于一个单独的不可克隆的DNA样生物实体。我们预设了具有相互认证属性的协议来管理完整的RKE系统。它基于结合了SUC模块的数字硬件令牌,该模块设计为以合理的成本适合于汽车工业量产环境。

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