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SKAIT: A parameterized key assignment scheme for confidential communication in resource constrained ad hoc wireless networks

机译:SKAIT:在资源受限的自组织无线网络中用于机密通信的参数化密钥分配方案

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摘要

Predistribution of cryptographic keys is a widely used approach for establishing secure communication between severely resource-constrained nodes with limited or no access to network infrastructure. Many existing key predistribution schemes make the implicit assumption that the contents of the communication messages need not be kept private from nodes other than the intended recipient. Messages in such schemes are not guaranteed to be confidential-they may be read by nodes within the network other than the intended recipient. In this paper, we propose SKAIT, a parameterized symmetric key predistribution scheme that guarantees a secure and confidential channel between every pair of nodes in a wireless network. Specifically, our scheme guarantees that the contents of messages exchanged between two nodes in the network cannot be read even by other nodes within the network. But, like many other key assignment schemes, our scheme is also vulnerable to collusion-based attacks in which several nodes can pool their keys together to eavesdrop on communications between other nodes. Parameterization enables control over the number of keys assigned to a node, and allows users to trade increased key space complexity for improved resistance against collusion-based attacks. We also present an extension to SKAIT, referred to as SKAIT-MI, that reduces the minimum number of keys that a node is required to store by replacing the single large key assignment instance with several smaller key assignment instances. We show via simulation that SKAIT and its extension SKAIT-MI provide significantly better resistance against collusion than other proposed schemes that support internal confidentiality-by as much as a factor of two-for a large range of key storage capacities. Finally, we describe an extension to our key assignment schemes to add support for node additions and revocations.
机译:加密密钥的预分发是一种在资源严重受限的节点之间建立安全通信的广泛使用的方法,对网络基础结构的访问有限或没有访问权限。许多现有的密钥预分配方案都做出了隐含的假设,即通信消息的内容无需对目标接收者以外的节点保密。不能保证此类方案中的消息是机密的,它们可能会被网络中除预期收件人之外的节点读取。在本文中,我们提出了SKAIT,这是一种参数化的对称密钥预分配方案,该方案可确保无线网络中每对节点之间的安全和机密通道。具体而言,我们的方案保证了即使网络中的其他节点也无法读取网络中两个节点之间交换的消息的内容。但是,与许多其他密钥分配方案一样,我们的方案也容易受到基于共谋的攻击,在这种攻击中,多个节点可以将其密钥集中在一起,以窃听其他节点之间的通信。通过参数化,可以控制分配给节点的密钥的数量,并允许用户以增加的密钥空间复杂度为代价,以增强抵抗基于共谋的攻击的能力。我们还提出了对SKAIT的扩展,称为SKAIT-MI,它通过用几个较小的密钥分配实例替换单个大密钥分配实例,减少了节点需要存储的密钥的最小数量。我们通过仿真显示,与其他提议的支持内部机密性的方案相比,SKAIT及其扩展名SKAIT-MI对于大范围的关键存储容量提供了比其他提议的方案明显更好的抵御共谋的能力。最后,我们描述了密钥分配方案的扩展,以增加对节点添加和撤销的支持。

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