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An Effective Verifiable Database Protocol in Severe Untrusted Environment

机译:严重不受信任的环境中有效的可验证数据库协议

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The security of outsourced data has been a key issue in cloud applications. Previous researches have focused on the remote data auditing and verification schemes. Although some of them have the properties of dynamic update and public audit, most of these schemes implicitly assume an honest client. Actually, the client has the motivations to corrupt the verification results against server, and the server may suspect the verification results under the situation where the client is dishonest. Up to now, few solutions have been proposed when both the client and server are not fully trusted and either side could be malicious. In this paper, a strict verifiable database (sVDB) protocol is proposed to tackle this problem. The concrete construction based on the bilinear pair technique can support client's real-time query and batch update operations. We prove the security of the scheme by contradiction under the square computational Diffie-Hellman assumption. We also implement the protocol and carry out several experiments to compare its performance with the state-of-the-art VDB scheme using vector commitment. All the results show that the proposed sVDB scheme achieves good security performance and high computation efficiency.
机译:外包数据的安全性是云应用程序的关键问题。以前的研究专注于远程数据审核和验证方案。虽然他们中的一些具有动态更新和公共审计的属性,但大多数这些方案都隐含地承担了诚实的客户。实际上,客户端具有损坏对服务器的验证结果的动机,并且服务器可能怀疑客户端是不诚实的情况下的验证结果。到目前为止,当客户端和服务器都不完全信任时,已经提出了很少的解决方案,并且任何一方都可能是恶意的。在本文中,提出了一个严格的可核实数据库(SVDB)协议来解决这个问题。基于Bilinear对技术的混凝土结构可以支持客户的实时查询和批量更新操作。我们通过方形计算Diffie-Hellman假设下的矛盾证明了该方案的安全性。我们还实施协议并执行几个实验,以将其性能与使用传染媒介承诺进行比较。所有结果表明,所提出的SVDB方案达到了良好的安全性能和高计算效率。

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