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Verifiably Encrypted Signatures with Short Keys Based on the Decisional Linear Problem and Obfuscation for Encrypted VES

机译:基于决策线性问题和加密VES模糊处理的带有短密钥的可验证加密签名

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Verifiably encrypted signatures (VES) are signatures encrypted by a public key of a trusted third party and we can verify their validity without decryption. This paper proposes a new VES scheme which is secure under the decisional linear (DLIN) assumption in the standard model. We also propose new obfuscators for encrypted signatures (ES) and encrypted VES (EVES) which are secure under the DLIN assumption. All previous efficient VES schemes in the standard model are either secure under standard assumptions (such as the computational Diffie-Hellman assumption) with large verification (or secret) keys or secure under (non-standard) dynamic q-type assumptions (such as the q-strong Diffie-Hellman extraction assumption) with short verification keys. Our construction is the first efficient VES scheme with short verification (and secret) keys secure under a standard assumption (DLIN). As by-products of our VES scheme, we construct new obfuscators for ES/EVES based on our new VES scheme. They are more efficient than previous obfuscators with respect to the public key size. Previous obfuscators for EVES are secure under non-standard assumption and use zero-knowledge (ZK) proof systems and Fiat-Shamir heuristics to obtain non-interactive ZK, i.e., its security is considered in the random oracle model. Thus, our construction also has an advantage with respect to assumptions and security models. Our new obfuscator for ES is obtained from our new obfuscator for EVES.
机译:可验证加密的签名(VES)是通过受信任的第三方的公钥加密的签名,我们无需解密即可验证其有效性。本文提出了一种新的VES方案,该方案在标准模型的决策线性(DLIN)假设下是安全的。我们还为在DLIN假设下安全的加密签名(ES)和加密VES(EVES)提出了新的混淆器。在标准模型中,所有先前有效的VES方案要么在具有大型验证(或秘密)密钥的标准假设(例如计算Diffie-Hellman假设)下是安全的,要么在(非标准的)动态q型假设(例如q-强Diffie-Hellman提取假设),带有简短的验证密钥。我们的构造是第一个有效的VES方案,具有在标准假设(DLIN)下安全的短验证(和秘密)密钥。作为VES方案的副产品,我们基于新的VES方案构造了ES / EVES的新混淆器。就公钥大小而言,它们比以前的混淆器更有效。以前的EVES混淆器在非标准假设下是安全的,并使用零知识(ZK)证明系统和Fiat-Shamir启发式算法来获得非交互式ZK,即在随机预言模型中考虑了其安全性。因此,我们的构造在假设和安全模型方面也具有优势。我们用于ES的新型混淆器是从用于EVES的新型混淆器获得的。

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