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Revisiting Attribute-Based Encryption With Verifiable Outsourced Decryption

机译:通过可验证的外包解密重新探究基于属性的加密

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摘要

Attribute-based encryption (ABE) is a promising technique for fine-grained access control of encrypted data in a cloud storage, however, decryption involved in the ABEs is usually too expensive for resource-constrained front-end users, which greatly hinders its practical popularity. In order to reduce the decryption overhead for a user to recover the plaintext, Green suggested to outsource the majority of the decryption work without revealing actually data or private keys. To ensure the third-party service honestly computes the outsourced work, Lai provided a requirement of verifiability to the decryption of ABE, but their scheme doubled the size of the underlying ABE ciphertext and the computation costs. Roughly speaking, their main idea is to use a parallel encryption technique, while one of the encryption components is used for the verification purpose. Hence, the bandwidth and the computation cost are doubled. In this paper, we investigate the same problem. In particular, we propose a more efficient and generic construction of ABE with verifiable outsourced decryption based on an attribute-based key encapsulation mechanism, a symmetric-key encryption scheme and a commitment scheme. Then, we prove the security and the verification soundness of our constructed ABE scheme in the standard model. Finally, we instantiate our scheme with concrete building blocks. Compared with Lai ’s scheme, our scheme reduces the bandwidth and the computation costs almost by half.
机译:基于属性的加密(ABE)是一种用于对云存储中的加密数据进行细粒度访问控制的有前途的技术,但是,对于资源受限的前端用户,ABE中涉及的解密通常过于昂贵,这极大地阻碍了其实用性人气。为了减少用户恢复明文所需的解密开销,格林建议将大部分解密工作外包出去,而不必透露实际的数据或私钥。为了确保第三方服务能够诚实地计算外包工作,Lai对ABE的解密提出了可验证性的要求,但是他们的方案使基础ABE密文的大小和计算成本增加了一倍。粗略地说,它们的主要思想是使用并行加密技术,而其中一个加密组件用于验证目的。因此,带宽和计算成本增加了一倍。在本文中,我们研究了同样的问题。特别是,我们基于基于属性的密钥封装机制,对称密钥加密方案和承诺方案,提出了具有可验证的外包解密的ABE的更有效和通用的构造。然后,我们在标准模型中证明了我们构造的ABE方案的安全性和验证的可靠性。最后,我们用混凝土构件实例化我们的方案。与赖的方案相比,我们的方案将带宽和计算成本降低了近一半。

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