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A pairing-free certificate-based proxy re-encryption scheme for secure data sharing in public clouds

机译:基于免配对证书的代理重新加密方案,可在公共云中安全共享数据

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摘要

To assure the confidentiality of the sensitive data stored in public cloud storages, the data owners should encrypt their data before submitting them to the clouds. However, it brings new challenge for us to effectively share the encrypted data in the public clouds. The paradigm of proxy re-encryption provides a promising solution to data sharing as it enables a data owner to delegate the decryption rights of the encrypted data to the authorized recipients without any direct interaction. Certificate-based proxy re-encryption is a new cryptographic primitive to effectively support the data confidentiality in public cloud storages, which enjoys the advantages of certificate-based encryption while providing the functionalities of proxy re-encryption. In this paper, we propose a certificate-based proxy re-encryption scheme without bilinear pairings. The proposed scheme is proven secure under the computational Diffie-Hellman assumption in the random oracle model. Due to avoiding the time-consuming bilinear pairing operations, the proposed scheme significantly reduces the computation cost. Compared to the previous certificate-based proxy re-encryption schemes with bilinear pairings, it enjoys obvious advantage in the computation efficiency, and thus is more suitable for the computation-limited or power-constrained devices.
机译:为了确保存储在公共云存储中的敏感数据的机密性,数据所有者应在将其数据提交到云之前对其数据进行加密。但是,它给我们带来了新的挑战,即如何在公共云中有效共享加密数据。代理重新加密的范例为数据共享提供了一个有希望的解决方案,因为它使数据所有者无需任何直接交互即可将加密数据的解密权委派给授权的接收者。基于证书的代理重新加密是一种新的加密原语,可以有效地支持公共云存储中的数据机密性,它在提供代理重新加密的功能的同时,还具有基于证书的加密优势。在本文中,我们提出了一种没有双线性配对的基于证书的代理重新加密方案。在随机预言机模型的计算Diffie-Hellman假设下,该方案被证明是安全的。由于避免了费时的双线性配对操作,因此该方案显着降低了计算成本。与以前的具有双线性对的基于证书的代理重新加密方案相比,它在计算效率上具有明显的优势,因此更适合于计算受限或功耗受限的设备。

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