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Anonymous Single-Round Server-Aided Verification

机译:匿名单轮服务器辅助验证

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摘要

Server-Aided Verification (SAV) is a method that can be employed to speed up the process of verifying signatures by letting the verifier outsource part of its computation load to a third party. Achieving fast and reliable verification under the presence of an untrusted server is an attractive goal in cloud computing and internet of things scenarios. In this paper, we describe a simple framework for SAV where the interaction between a verifier and an untrusted server happens via a single-round protocol. We propose a security model for SAV that refines existing ones and includes the new notions of SAW-anonymity and extended unforgeability. In addition, we apply our definitional framework to provide the first generic transformation from any signature scheme to a single-round SAV scheme that incorporates verifiable computation. Our compiler identifies two independent ways to achieve SAV-anonymity: computationally, through the privacy of the verifiable computation scheme, or unconditionally, through the adaptibility of the signature scheme. Finally, we define three novel instantiations of SAV schemes obtained through our compiler. Compared to previous works, our proposals are the only ones which simultaneously achieve existential unforgeability and soundness against collusion.
机译:服务器辅助验证(SAV)是一种方法,可以用于加速通过让验证者将其计算负载的一部分驻留给第三方来加速验证签名的过程。在不受信任的服务器的存在下实现快速可靠的验证是云计算和事物互联网的有吸引力的目标。在本文中,我们描述了一种简单的框架,用于节省验证者和不可信服务器之间的交互通过单轮协议。我们提出了一个安全模型,以便为现有的SAV提供,并包括锯匿名和延长不可裁减性的新概念。此外,我们应用了我们的定义框架,以提供从任何签名方案到一个包含可验证计算的一个签名方案的第一通用转换。我们的编译器识别了两个独立的方法来实现Sav-匿名:通过签名方案的适应性,通过验证计算方案的隐私或无条件地进行计算地。最后,我们定义了通过编译器获得的三种项目的三种小说实例化。与以前的作品相比,我们的建议是唯一一个同时实现存在性不可透露和抗坏堆垛的健康的建议。

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