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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Provably secure group key management scheme based on proxy re-encryption with constant public bulletin size and key derivation time
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Provably secure group key management scheme based on proxy re-encryption with constant public bulletin size and key derivation time

机译:基于Proxy Re-Crecryption的可证明的安全组密钥管理方案,具有恒定的公共公告大小和关键推导时间

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摘要

Users share a group key to decrypt encryptions for the group using a group key management scheme. In this paper, we propose a re-encryption-based group key management scheme, which uses a unidirectional proxy re-encryption scheme with special properties to enable group members share the updated group key with minimum storage and computation overhead. In particular, we propose a proxy re-encryption scheme that supports direct re-encryption key derivation using intermediate re-encryption keys. Unlike multi-hop re-encryption, the proposed proxy re-encryption scheme does not involve repeated re-encryption of the message. All the computations are done on the re-encryption key level and only one re-encryption is sufficient for making the group key available to the users. The proposed scheme is the first for group key management based on proxy re-encryption that is secure against collusion. The individual users store just one individual secret key with group key derivation requiring O computation steps for a group of N users. Size of the public bulletin maintained to facilitate access to the most recent group key for off-line members is O(N) and remains constant with respect to the number of group updates. The proposed group key management scheme confronts attacks by a non-member and even a collusion attack under standard cryptographic assumptions.
机译:用户共享组密钥以使用组密钥管理方案解密组的加密。在本文中,我们提出了一种基于重新加密的组密钥管理方案,它使用具有特殊属性的单向代理重新加密方案来使能组成员共享更新的组密钥,其中包含最小存储和计算开销。特别地,我们提出了一种代理重新加密方案,其支持使用中间重新加密密钥的直接重新加密密钥推导。与多跳重新加密不同,所提出的代理重新加密方案不涉及重复重新加密该消息。所有计算都是在重新加密密钥级别完成的,并且只有一个重新加密足以使用户可用的组密钥。所提出的方案是基于代理重新加密的组密钥管理的第一个,这是安全抵消勾结的。个人用户只存储一个单独的密钥,其中包含一组N个用户的计算步骤的组密钥导出。维护公共公告的大小,以便于访问离线成员的最新组密钥是O(n),并且对于组更新的数量保持不变。拟议的委员会关键管理计划面临非成员的攻击,甚至根据标准加密假设的勾结攻击。

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