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An efficient identity-based proxy signcryption using lattice

机译:使用格子的基于高效的基于身份的代理签名

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摘要

Signcryption combines the functionalities of digital signature and encryption in a single step, which promises to increase the efficiency and the confidentiality of on-line transactions. Identity-based proxy signcryption integrates the functions of identity-based cryptography, proxy signature and signcryption. However, identity-based proxy signcryption constructed on the discrete logarithm and the integer factoring problems cannot defeat quantum attack. Therefore, the paper proposes a lattice-based identity-based proxy signcryption since there are none efficient quantum algorithms to attack lattice-based cryptography. The constructed scheme has the properties of both signcryption and proxy signature, i.e., the constructed scheme has ind-cca2 security, suf-cma security, strong identifiability, strong undeniability and key dependence properties. Comparing with the known identity-based proxy signcryption, the proposed scheme needs smaller computation complexity, smaller secret key size and smaller signature tuple size. Besides, the proposed scheme does not depend on the public key infrastructure since it is an identity-based cryptography.
机译:Signcryption在一步中结合了数字签名和加密的功能,这有望提高在线交易的效率和机密性。基于身份的代理签名集成了基于身份的加密,代理签名和签名的功能。但是,在离散对数和整数因子问题上构建的基于身份的代理签名无法打败量子攻击。因此,本文提出了一种基于格子的基于身份的代理签名,因为没有有效量子算法来攻击基于格子的密码学。构造方案具有签名和代理签名的性质,即,构造方案具有IND-CCA2安全性,SUF-CMA安全性,强度的可识别性,强烈的不可否认和关键依赖性。与已知的基于身份的代理签名进行比较,所提出的方案需要较小的计算复杂性,较小的秘密密钥大小和较小的签名元组大小。此外,所提出的方案不依赖于公钥基础设施,因为它是基于身份的密码学。

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