具有动态阈值变化的去中心化加密网络

IET Blockchain Pub Date : 2023-02-21 DOI:10.1049/blc2.12026
Wenpeng Song, Xin Pei, Ming Li
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引用次数: 0

摘要

阈值代理重新加密(tPRE)算法不仅保证了数据所有权和使用权的分离,而且防止了单个数据代理的邪恶行为。为了避免多个数据代理的合谋,本文构建了一个基于区块链技术和tPRE的去中心化加密网络。DCN不仅仅是一个密钥管理系统,同时扩展了区块链网络的数据存储能力。结合现有的分布式存储方案,它可以存储大量数据。由于分布式网络中拜占庭式的故障,数据代理节点可以随意加入或离开。为了确保DCN网络中数据代理节点的数量满足重新加密阈值的要求,并且数据授权操作能够顺利进行,本文提出了一种tPRE片段的动态刷新方法。当网络中存在满足阈值数量的片段时,加密片段的分配可以进行非交互性和自适应调整。非交互性是指每个数据代理节点在不收集DCN中其他节点的旧片段的情况下,将其旧片段独立刷新为新片段,然后将新片段分发给DCN中的其他数据代理节点。自适应是指监控DCN中数据代理节点集的变化,并自动刷新碎片。最后,对关键算法的性能进行了计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A decentralized crypto network with dynamic threshold change

A decentralized crypto network with dynamic threshold change

The threshold proxy re-encryption (tPRE) algorithm not only ensures the separation of data ownership and use right, but also prevents a single data proxy from doing evil. In order to avoid collusion of multiple data proxies, this paper constructs a decentralized crypto network (DCN) based on blockchain technology and tPRE. DCN is more than a key management system, while expanding the data storage capacity of blockchain network. Combined with existing distributed storage schemes, it can store massive data. Due to Byzantine failure in distributed networks, the data proxy nodes can join or leave at will. In order to ensure that the number of data proxy nodes in the DCN network meets the requirements of the re-encryption threshold, and the data authorization operation can be carried out smoothly, this paper presents a dynamic refresh method of tPRE fragments. When there are fragments that meet the threshold number in the network, the allocation of encrypted fragments can be adjusted non-interactivity and self-adaptively. Non-interactivity means that each data proxy node independently refreshes its old fragments into new fragments without collecting old fragments from other nodes in the DCN, and then distributes the new fragments to other data proxy nodes in the DCN. Self-adaptability refers to monitoring the changes of data proxy node sets in the DCN, and automatically refreshing fragments. Finally, the performance of critical algorithms is calculated in the proposal.

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