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Public key encryption supporting equality test and flexible authorization without bilinear pairings

机译:公钥加密支持平等测试和无需双线性配对的灵活授权

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Public key encryption with equality test (PKEET) is an important cryptographic primitive for protecting users? outsourced data in the cloud-based email systems. Due to the fact that it is required to deploy different authorization policies for the demand of dynamic privacy protection in the cloud-based email systems, Ma et al. recently presented a new related primitive, called public key encryption with equality test supporting flexible authorization (PKEET-FA). In their proposal, four types of authorization were considered to support different authorization policies. Their proposal is based on the bilinear pairings. However, as the basic operation of equality test, bilinear pairings are expensive operations compared with modular multiplications and modular inverses. Hence, it is desired to propose a new method for constructing efficient equality test with modular multiplications and modular inverses. In this paper, we present such a PKEET-FA scheme. Compared with Ma et al.?s, our proposal is (surprisingly) more efficient, especially in terms of equality test. Moreover, our proposal supports an additional type of authorization, called user-specific ciphertext-to-user (or user-specific user-to-ciphertext) level authorization. Hence, ours is more flexible than Ma et al.?s.
机译:具有平等测试(pKeet)的公钥加密是保护用户的重要加密原语?基于云的电子邮件系统中的外包数据。由于必须为基于云的电子邮件系统中的动态隐私保护的需求部署不同的授权策略,Ma等人。最近介绍了一个新的相关原始,称为公钥加密,具有支持灵活授权的平等测试(pkeet-fa)。在提案中,考虑了四种类型的授权来支持不同的授权政策。他们的提案是基于双线性配对。然而,作为平等测试的基本操作,与模块化乘法和模块化反转相比,双线性配对是昂贵的操作。因此,希望用模块化乘法和模块化反转构建有效平等测试的新方法。在本文中,我们提出了这样的配对法方案。与Ma等人相比,我们的建议(令人惊讶地)更有效,特别是在平等测试方面。此外,我们的提案支持额外类型的授权,称为用户特定的密文到用户(或用户特定的用户到密文)级别授权。因此,我们的灵活性比Ma等人更灵活。

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