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Real-Time Digital Signatures for Time-Critical Networks

机译:关键时间网络的实时数字签名

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The secure and efficient operation of time-critical networks, such as vehicular networks, smart-grid, and other smart-infrastructures, is of primary importance in today's society. It is crucial to minimize the impact of security mechanisms over such networks so that the safe and reliable operations of time-critical systems are not being interfered. For instance, if the delay introduced by the crypto operations negatively affects the time available for braking a car before a collision, the car may not be able to safely stop in time. In particular, as a primary authentication mechanism, existing digital signatures introduce a significant computation and communication overhead, and therefore are unable to fully meet the real-time processing requirements of such time-critical networks. In this paper, we introduce a new suite of real-time digital signatures referred to as Structure-free and Compact Real-time Authentication (SCRA), supported by hardware acceleration, to provide delay-aware authentication in time-critical networks. SCRA is a novel signature framework that can transform any secure aggregate signature into a signer efficient signature. We instantiate SCRA framework with condensed-RSA, BGLS, and NTRU signatures. Our analytical and experimental evaluation validates the significant performance advantages of SCRA schemes over their base signatures and the state-of-the-art schemes. Moreover, we push the performance of SCRA schemes to the edge via highly optimized implementations on vehicular capable system-on-chip as well as server-grade general purpose graphics processing units. We prove that SCRA is secure (in random oracle model) and show that SCRA can offer an ideal alternative for authentication in time-critical applications.
机译:诸如车载网络,智能电网和其他智能基础设施等对时间要求严格的网络的安全高效运行在当今社会中至关重要。至关重要的是,最小化安全机制对此类网络的影响,以免影响时间关键型系统的安全可靠运行。例如,如果加密操作引入的延迟负面影响碰撞前可用于制动汽车的时间,则汽车可能无法及时安全停车。特别地,作为一种主要的认证机制,现有的数字签名引入了大量的计算和通信开销,因此不能完全满足这种时间紧迫网络的实时处理要求。在本文中,我们介绍了一套新的实时数字签名套件,称为无结构和紧凑型实时身份验证(SCRA),并由硬件加速支持,以在时间关键型网络中提供延迟感知的身份验证。 SCRA是一种新颖的签名框架,可以将任何安全的聚合签名转换为签名者有效的签名。我们使用压缩的RSA,BGLS和NTRU签名实例化SCRA框架。我们的分析和实验评估证实了SCRA方案在其基本特征和最新方案方面的显着性能优势。此外,我们通过具有车载功能的片上系统以及服务器级通用图形处理单元上的高度优化的实现,将SCRA方案的性能推到了极致。我们证明了SCRA是安全的(在随机Oracle模型中),并表明SCRA可以为时间紧迫的应用程序提供理想的身份验证替代方案。

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