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Definitions and Bounds for Self-Healing Key Distribution Schemes

机译:自我修复密钥分发方案的定义和界限

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Self-healing key distribution schemes allow group managers to broadcast session keys to large and dynamic groups of users over unreliable channels. Roughly speaking, even if during a certain session some broadcast messages are lost due to network faults, the self-healing property of the scheme enables each group member to recover the key from the broadcast messages he/she has received before and after that session. Such schemes are quite suitable in supporting secure communication in wireless networks and mobile wireless ad-hoc networks. Recent papers have focused on self-healing key distribution, and have provided definitions and constructions. The contribution of this paper is the following: 1. We analyse current definitions of self-healing key distribution and, for two of them, we show that no protocol can achieve the definition. 2. We show that a lower bound on the size of the broadcast message, previously derived, does not hold. 3. We propose a new definition of self-healing key distribution, and we show that it can be achieved by concrete schemes. 4. We give some lower bounds on the resources required for implementing such schemes i.e., user memory storage and communication complexity. We prove that some of the bounds are tight.
机译:自我修复密钥分发方案允许组管理员通过不可靠的频道向大型动态用户组广播会话密钥。粗略地讲,即使在某个会话期间由于网络故障而丢失了一些广播消息,该方案的自我修复属性也使每个组成员能够从该会话之前和之后接收到的广播消息中恢复密钥。这样的方案非常适合于支持无线网络和移动无线自组织网络中的安全通信。最近的论文集中在自我修复密钥分发上,并提供了定义和构造。本文的贡献如下:1.我们分析了自愈密钥分发的当前定义,并且对于其中两个,我们表明没有协议可以实现该定义。 2.我们证明,先前导出的广播消息的大小的下限不成立。 3.我们提出了一种自我修复密钥分配的新定义,并表明可以通过具体方案来实现。 4.我们对实现这种方案所需的资源给出了一些下限,即用户存储器的存储和通信的复杂性。我们证明了某些界限是紧密的。

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