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Structure-Preserving and Re-randomizable RCCA-Secure Public Key Encryption and Its Applications

机译:保留结构和可重新随机分配的RCCA-安全公钥加密及其应用

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Re-randomizable RCCA-secure public key encryption (Rand-RCCA PKE) schemes reconcile the property of re-randomizability of the ciphertexts with the need of security against chosen-ciphertexts attacks. In this paper we give a new construction of a Rand-RCCA PKE scheme that is perfectly re-randomizable. Our construction is structure-preserving, can be instantiated over Type-3 pairing groups, and achieves better computation and communication efficiency than the state of the art perfectly re-randomizable schemes (e.g., Prabhakaran and Rosulek, CRYPTO'07). Next, we revive the Rand-RCCA notion showing new applications where our Rand-RCCA PKE scheme plays a fundamental part: (1) We show how to turn our scheme into a publicly-verifiable Rand-RCCA scheme; (2) We construct a malleable NIZK with a (variant of) simulation soundness that allows for re-randomizability; (3) We propose a new UC-secure Verifiable Mix-Net protocol that is secure in the common reference string model. Thanks to the structure-preserving property, all these applications are efficient. Notably, our Mix-Net protocol is the most efficient universally verifiable Mix-Net (without random oracle) where the CRS is an uniformly random string of size independent of the number of senders. The property is of the essence when such protocols are used in large scale.
机译:可重新随机化的RCCA安全公共密钥加密(Rand-RCCA PKE)方案将密文的可重新随机化的性质与针对所选密文攻击的安全性需求进行协调。在本文中,我们给出了可以完全重新随机化的Rand-RCCA PKE方案的新结构。我们的结构是保留结构的,可以在Type-3配对组上实例化,并且与最先进的完全可重新随机化的方案(例如Prabhakaran和Rosulek,CRYPTO'07)相比,可以实现更好的计算和通信效率。接下来,我们重新审视Rand-RCCA的概念,展示Rand-RCCA PKE方案在其中发挥重要作用的新应用:(1)我们展示了如何将我们的方案转变为可公开验证的Rand-RCCA方案; (2)我们构建具有(多种)模拟健全性的可延展NIZK,以允许重新随机化; (3)我们提出了一种新的UC安全可验证混合网络协议,该协议在通用参考字符串模型中是安全的。由于保留了结构,所有这些应用程序都是有效的。值得注意的是,我们的Mix-Net协议是最有效的可通用验证的Mix-Net(无随机预言),其中CRS是大小一致且大小随机的字符串,与发送者的数量无关。当大规模使用此类协议时,该属性至关重要。

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