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Predicate- and Attribute-Hiding Inner Product Encryption in a Public Key Setting

机译:在公钥设置中谓词和属性隐藏内部产品加密

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In this paper, we propose a reasonable definition of predicatehiding inner product encryption (IPE) in a public key setting, which we call inner product encryption with ciphertext conversion (IPE-CC), where original ciphertexts are converted to predicate-searchable ones by an helper in possession of a conversion key. We then define a notion of full security for IPE-CC, which comprises three security properties of being adaptively predicate- and attribute-hiding in the public key setting, adaptively (fully-)attribute-hiding against the helper, and usefully secure even against the private-key generator (PKG). We then present the first fully secure IPE-CC scheme, and convert it into the first fully secure symmetric-key IPE (SIPE) scheme, where the security is defined in the sense of Shen, Shi, Waters. All the security properties are proven under the decisional linear assumption in the standard model. The IPECC scheme is comparably as efficient as existing attribute-hiding (not predicate-hiding) IPE schemes.We also present a variant of the proposed IPE-CC scheme with the same security that achieves shorter public and secret keys.We employ two key techniques, trapdoor basis setup, in which a new trapdoor is embedded in a public key, and multi-system proof technique, which further generalizes an extended dual system approach given by Okamoto and Takashima recently.
机译:在本文中,我们提出了一个合理的谓词内部产品加密(IPE)在公钥设置中定义,我们将内在产品加密与密文转换(IPE-CC)调用,其中原始密文将由AN转换为谓词可搜索的拥有转换钥匙的帮助者。然后,我们为IPE-CC定义了完全安全的概念,该IPE-CC包括自适应地谓词和属性隐藏在公钥设置中的三个安全性属性,自适应地(完全)属性隐藏在助手中,即使反对私钥生成器(PKG)。然后,我们提出了第一个完全安全的IPE-CC方案,并将其转换为第一个完全安全的对称关键IPE(钻石)方案,其中安全是在沉,施,水域的意义上定义的。在标准模型中的决定性线性假设下证明所有安全性属性。 IPECC方案与现有属性隐藏(不是谓词隐藏)IPE方案相比,IPECC方案相对有效。我们还介绍了具有相同安全性的提出的IPE-CC方案的变种,以实现更短的公共和秘密密钥。我们采用了两个关键技术,Trapdoor基础设置,其中一个新的Trapdoor嵌入在公钥中,以及多系统证明技术,进一步概括了Okamoto和Takashima的扩展了延长的双重系统方法。

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