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Towards collusion-attack-resilient group key management using one-way function tree

机译:使用单向功能树实现共谋攻击弹性分组密钥管理

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摘要

One-way Function Tree (OFT) is a promising scheme for group key management. However, it has been found vulnerable to collusion attacks. Malicious users can collaborate to break forward and backward secrecy. Solutions have been proposed to prevent collusion attacks on OFT scheme. In this paper, we first demonstrate how existing solutions only partially consider collusion attacks. Current models surmise scenarios where malicious users may obtain node secrets unknown through collusion. They do not, however, consider that malicious users can decrypt extra blinded node secrets using known node secrets. As a result, the malicious users can collude to obtain far more information than expected. We use theoretical evidence to identify the exact node secrets which can be obtain by malicious users. Finally, we propose two improved schemes named repeated one-way function tree (ROFT) and node one-way function tree (NOFT). Compared to previous solutions, ROFT and NOFT require less adjustments to make the OFF scheme resilient to collusion attacks. Performance analysis shows that ROFT and NOFT do not incur extra communication overhead compared to the original OFT scheme. The proposed ROFT and NOFT schemes effectively solve the security problem of the OFT scheme at the cost of a minimal increase in computational cost and storage overhead. (C) 2016 Elsevier B.V. All rights reserved.
机译:单向功能树(OFT)是一种有前途的组密钥管理方案。但是,已经发现它容易受到串通攻击。恶意用户可以进行协作来突破前进和后退的机密性。已经提出了解决方案来防止对OFT方案的共谋攻击。在本文中,我们首先演示现有解决方案如何仅部分考虑共谋攻击。当前模型推测了恶意用户可能通过合谋获得未知节点秘密的场景。但是,他们不认为恶意用户可以使用已知的节点机密解密额外的盲节点机密。结果,恶意用户可能合谋获得比预期更多的信息。我们使用理论证据来确定恶意用户可以获取的确切节点机密。最后,我们提出了两种改进的方案,分别称为重复单向功能树(ROFT)和节点单向功能树(NOFT)。与以前的解决方案相比,ROFT和NOFT所需的调整更少,以使OFF方案能够应对共谋攻击。性能分析表明,与原始的OFT方案相比,ROFT和NOFT不会产生额外的通信开销。所提出的ROFT和NOFT方案以最小化计算成本和存储开销的代价有效地解决了OFT方案的安全性问题。 (C)2016 Elsevier B.V.保留所有权利。

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