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Efficient and secure data forwarding for erasure-code-based cloud storage

机译:基于擦除代码的云存储的高效和安全数据转发

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摘要

Cloud computing is a promising computing paradigm which has drawn extensive attention from both academia and industry. Since that the cloud is very likely to be outside of the trust domain of the users, serious concerns over the confidentiality of the outsourced data are arising. Traditional encryption methods guarantee data confidentiality, but also limit the functionality of the cloud storage as few operations are supported over encrypted data. The main technique contribution of this paper is that we present an efficient data forwarding scheme for the erasure-coded and encrypted cloud, which enforces the cloud not only provide data reliability and confidentiality, but also support the functionality that the encrypted data can be forwarded to another user without being retrieved back. Specifically, we design an all-or-nothing transform based encryption and a variant of ElGamal-based proxy re-encryption algorithms, blending them with the Reed-Solomon erasure code, our scheme is quite more efficient compared with previous studies and only needs to update partial data blocks instead of the whole file for data forwarding. In addition, our scheme also satisfies another practical property that the original data owner can no longer decrypt or forward the re-encrypted data again to other users after a complete data forwarding, which is termed to be “original inaccessibility” in our study. Analysis shows that our scheme is secure and satisfactory. Finally we theoretically and experimentally evaluate the performance of our scheme and the results indicate that our scheme is efficient in the procedure of file dispersal, forward and retrieval.
机译:云计算是一个有前途的计算范例,它从学术界和工业中汲取了广泛的关注。由于云极可能在用户的信任领域之外,因此产生了对外包数据的机密性的严重问题。传统的加密方法保证数据机密性,但还限制了云存储的功能,因为在加密数据上支持很少的操作。本文的主要技术贡献是我们为擦除编码和加密云提出了一种有效的数据转发方案,该方案不仅可以提供数据可靠性和机密性,而且还支持可以转发加密数据的功能另一个用户没有检索到。具体而言,我们设计了基于或全无的基于转换的加密和基于Elgamal的代理重新加密算法的变体,将它们与芦荟擦除代码混合,我们的方案与以前的研究相比更有效,只需要更新部分数据块而不是整个文件进行数据转发。此外,我们的计划还满足了原始数据所有者在完整的数据转发之后再次将重新加密数据再次解密或转发重新加密数据的另一种实际属性,这些属性被称为我们研究中的“原始不可移植”。分析表明,我们的计划是安全和令人满意的。最后,我们理论上和实验地评估了我们计划的表现,结果表明,我们的计划在文件分散,前进和检索的过程中有效。

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