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A Lattice-Based Homomorphic Proxy Re-Encryption Scheme with Strong Anti-Collusion for Cloud Computing

机译:一种基于格子的同性恋代理再加密方案具有云计算强的防串行

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摘要

The homomorphic proxy re-encryption scheme combines the characteristics of a homomorphic encryption scheme and proxy re-encryption scheme. The proxy can not only convert a ciphertext of the delegator into a ciphertext of the delegatee, but also can homomorphically calculate the original ciphertext and re-encryption ciphertext belonging to the same user, so it is especially suitable for cloud computing. Yin et al. put forward the concept of a strong collusion attack on a proxy re-encryption scheme, and carried out a strong collusion attack on the scheme through an example. The existing homomorphic proxy re-encryption schemes use key switching algorithms to generate re-encryption keys, so it can not resist strong collusion attack. In this paper, we construct the first lattice-based homomorphic proxy re-encryption scheme with strong anti-collusion (HPRE-SAC). Firstly, algorithm TrapGen is used to generate an encryption key and trapdoor, then trapdoor sampling is used to generate a decryption key and re-encryption key, respectively. Finally, in order to ensure the homomorphism of ciphertext, a key switching algorithm is only used to generate the evaluation key. Compared with the existing homomorphic proxy re-encryption schemes, our HPRE-SAC scheme not only can resist strong collusion attacks, but also has smaller parameters.
机译:同性恋代理重新加密方案结合了同种形态加密方案和代理重新加密方案的特征。代理不能仅将委派的密文转换为抄级器的密文,但也可以同性化地计算属于同一用户的原始密文和重新加密密文,因此它特别适用于云计算。 yin等人。提出了对代理重新加密方案的强烈勾结攻击的概念,并通过示例对该方案进行了强烈的勾结攻击。现有的同性恋代理重新加密方案使用密钥切换算法来生成重新加密密钥,因此无法抵抗强烈的串行攻击。在本文中,我们构建了具有强抗串串(HPRE-SAC)的第一种基于格子的同性恋代理再加密方案。首先,算法Trapgen用于生成加密密钥和陷阱,然后使用Trapdoor采样分别生成解密密钥和重新加密密钥。最后,为了确保密文的同性恋,只能用于生成评估密钥的密钥切换算法。与现有的同性恋代理重新加密方案相比,我们的HPRE-SAC方案不仅可以抵抗强烈的串行攻击,而且还具有较小的参数。

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