Computationally secure threshold secret sharing scheme with minimal redundancy

M. Babenko, A. Tchernykh, E. Golimblevskaia, N. V. Hung, V. Chaurasiya
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引用次数: 1

Abstract

When designing and using distributed storage systems with cloud technology, the security issues become crucial. One of the promising mechanisms is the computationally secure threshold secret sharing scheme. We propose a computationally secure secret sharing scheme based on the minimally redundant modular code. It reduces the computational complexity of data encoding and decoding and reduce data redundancy. We show that it is computationally secure and provides data redundancy equivalent to the redundancy of the Rabin system. We demonstrate that the minimally redundant modular code does not satisfy the criterion of compactness of a sequence, but it can be used as an asymptotically ideal secret sharing scheme.
具有最小冗余的计算安全阈值秘密共享方案
在设计和使用采用云技术的分布式存储系统时,安全问题变得至关重要。其中一种很有前途的机制是计算安全的阈值秘密共享方案。提出了一种基于最小冗余模块化代码的计算安全秘密共享方案。它降低了数据编码和解码的计算复杂度,减少了数据冗余。我们证明了它在计算上是安全的,并提供了相当于Rabin系统冗余的数据冗余。我们证明了最小冗余模码不满足序列紧性准则,但它可以作为渐近理想的秘密共享方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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