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Generic and Efficient Constructions of Attribute-Based Encryption with Verifiable Outsourced Decryption

机译:具有可验证的外包解密的基于属性的加密的通用有效构造

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Attribute-based encryption (ABE) provides a mechanism for complex access control over encrypted data. However in most ABE systems, the ciphertext size and the decryption overhead, which grow with the complexity of the access policy, are becoming critical barriers in applications running on resource-limited devices. Outsourcing decryption of ABE ciphertexts to a powerful third party is a reasonable manner to solve this problem. Since the third party is usually believed to be untrusted, the security requirements of ABE with outsourced decryption should include privacy and verifiability. Namely, any adversary including the third party should learn nothing about the encrypted message, and the correctness of the outsourced decryption is supposed to be verified efficiently. We propose generic constructions of CPA-secure and RCCA-secure ABE systems with verifiable outsourced decryption from CPA-secure ABE with outsourced decryption, respectively. We also instantiate our CPA-secure construction in the standard model and then show an implementation of this instantiation. The experimental results show that, compared with the existing scheme, our CPA-secure construction has more compact ciphertext and less computational costs. Moreover, the techniques involved in the RCCA-secure construction can be applied in generally constructing CCA-secure ABE, which we believe to be of independent interest.
机译:基于属性的加密(ABE)提供了一种对加密数据进行复杂访问控制的机制。但是,在大多数ABE系统中,密文大小和解密开销随访问策略的复杂性而增长,已成为在资源受限的设备上运行的应用程序中的关键障碍。将ABE密文解密工作外包给功能强大的第三方是解决此问题的合理方法。由于通常认为第三方不受信任,因此使用外包解密的ABE的安全要求应包括隐私和可验证性。即,包括第三方在内的任何对手都不应该对加密消息有所了解,并且应该有效地验证外包解密的正确性。我们提出了具有CPA安全和RCCA安全的ABE系统的通用构造,这些系统分别具有来自带有解密的CPA安全ABE的可验证的外包解密。我们还将在标准模型中实例化CPA安全结构,然后显示该实例的实现。实验结果表明,与现有方案相比,我们的CPA安全结构具有更紧凑的密文和更少的计算成本。此外,RCCA安全构建中涉及的技术可用于一般构建CCA安全ABE中,我们认为这是独立利益。

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