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Efficient distributed tag-based encryption and its application to group signatures with efficient distributed traceability

机译:高效的基于标签的分布式加密及其在具有有效分布式可追踪性的分组签名中的应用

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摘要

In this work, we first formalize the notion of dynamic group signatures with distributed traceability, where the capability to trace signatures is distributed among n managers without requiring any interaction. This ensures that only the participation of all tracing managers permits tracing a signature, which reduces the trust placed in a single tracing manager. The threshold variant follows easily from our definitions and constructions. Our model offers strong security requirements. Our second contribution is a generic construction for the notion which has a concurrent join protocol, meets strong security requirements, and offers efficient traceability, i.e. without requiring tracing managers to produce expensive zero-knowledge proofs for tracing correctness. To dispense with the expensive zero-knowledge proofs required in the tracing, we deploy a distributed tag-based encryption with public verifiability. Finally, we provide some concrete instantiations, which, to the best of our knowledge, are the first efficient provably secure realizations in the standard model simultaneously offering all the aforementioned properties. To realize our constructions efficiently, we construct an efficient distributed (and threshold) tag-based encryption scheme that works in the efficient Type-III asymmetric bilinear groups. Our distributed tag-based encryption scheme yields short ciphertexts (only 1280 bits at 128-bit security), and is secure under an existing variant of the standard decisional linear assumption. Our tag-based encryption scheme is of independent interest and is useful for many applications beyond the scope of this paper. As a special case of our distributed tag-based encryption scheme, we get an efficient tag-based encryption scheme in Type-III asymmetric bilinear groups that is secure in the standard model.
机译:在这项工作中,我们首先将具有可追溯性的动态组签名的概念形式化,其中跟踪签名的能力分布在n个管理者之间,而无需任何交互。这确保了只有所有跟踪管理器的参与才允许跟踪签名,从而减少了对单个跟踪管理器的信任。从我们的定义和构造可以很容易地得出阈值变体。我们的模型提供了强大的安全性要求。我们的第二个贡献是该概念的通用构造,该概念具有并发加入协议,满足强大的安全性要求并提供有效的可跟踪性,即无需跟踪管理器提供昂贵的零知识证明来跟踪正确性。为了免除跟踪所需的昂贵的零知识证明,我们部署了具有公共可验证性的基于分布式标签的加密。最后,我们提供了一些具体的实例,据我们所知,这是同时提供所有上述属性的标准模型中的第一个有效可证明的安全实现。为了有效地实现我们的构造,我们构造了一种有效的基于分布式(和阈值)标签的加密方案,该方案可在有效的III型非对称双线性组中工作。我们基于分布式标签的加密方案产生短密文(128位安全性下只有1280位),并且在标准决策线性假设的现有变体下是安全的。我们基于标签的加密方案具有独立的意义,并且对于超出本文范围的许多应用很有用。作为我们基于分布式标签的加密方案的特例,我们在Type-III非对称双线性组中获得了一种有效的基于标签的加密方案,该方案在标准模型中是安全的。

著录项

  • 作者

    Ghadafi E.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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