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Unbalancing Pairing-Free Identity-Based Authenticated Key Exchange Protocols for Disaster Scenarios

机译:灾难情况下基于平衡的无配对身份验证密钥交换协议的不平衡

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摘要

In disaster scenarios, such as an area after a terrorist attack, security is a significant problem since communications involve information for the rescue officers, such as polices, militaries, emergency medical technicians, and the survivors. Such information is critically important for the rescue organizations; and protecting the privacy of the survivors is required. Normally, authenticated key exchange (AKE) is an underlying approach for security. However, available AKE protocols are either inconvenient or infeasible in disaster areas due to the very nature of disasters. To address the security problem in disaster scenarios, we propose two pairing-free identity-based AKE (ID-AKE) protocols that have unbalanced computational requirements on the two parties. Compared with existing AKE protocols, the proposed protocols have a number of advantages in disaster scenarios: 1) they are more convenient than symmetric cryptography-based AKE protocols since they do not require any preshared secret between the parties; 2) they are more feasible than asymmetric cryptography-based AKE protocols since they do not require any online server; and 3) they are more friendly to battery-powered and computationally limited devices than pairing-based and pairing-free ID-AKE protocols since they do not involve any bilinear pairing (a time-consuming operation), and have lower computational requirement on the limited party. Security of the proposed protocols are analyzed in detail; and prototypes of them are implemented to evaluate the performance. We also illustrate the application of the protocols through a vivid use case in a terrorist attack scenario.
机译:在灾难场景中,例如恐怖袭击发生后的地区,安全是一个重大问题,因为通信涉及救援人员的信息,例如警察,军人,紧急医疗技术人员和幸存者。这些信息对救援组织至关重要。并且必须保护幸存者的隐私。通常,认证密钥交换(AKE)是安全性的基本方法。然而,由于灾难的性质,可用的AKE协议在灾难地区既不方便,也不可行。为了解决灾难场景中的安全问题,我们提出了两种基于身份的免配对AKE(ID-AKE)协议,它们对双方的计算要求均不均衡。与现有的AKE协议相比,拟议的协议在灾难情况下具有许多优点:1)它们比基于对称密码学的AKE协议更方便,因为它们不需要双方之间任何预共享的秘密; 2)由于它们不需要任何在线服务器,因此它们比基于非对称加密的AKE协议更可行; 3)与基于配对和免配对的ID-AKE协议相比,它们对电池供电且计算受限的设备更友好,因为它们不涉及任何双线性配对(耗时的操作),并且对有限的一方。详细分析了所提出协议的安全性;并使用它们的原型来评估性能。我们还将通过生动的用例说明在恐怖袭击场景中协议的应用。

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