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Efficient cluster-based group key agreement protocols for wireless ad hoc networks

机译:无线自组网的基于集群的高效组密钥协议协议

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摘要

The special nature and the constraints posed by wireless ad hoc networks make the establishment of a group key among all nodes a difficult and challenging task. Therefore, the execution of a group key agreement protocol which involves all the nodes in the network must be very carefully selected having in mind both the computation and communication efficiency. In this paper, we present an efficient group key agreement protocol which is particularly suitable for energy constrained, dynamically evolving wireless ad hoc networks. The topology of the network is reflected in a structure composed by small clusters. This clustering allows the synchronous execution of efficient tripartite key agreement protocols based on pairings. The required computations are simple for the devices to implement, the size of the exchanged messages is minimum and the storage memory required in every node is very small. The proposed protocol achieves a good energy balance and is very flexible because it can be used either as contributory, non-contributory, unauthenticated or authenticated protocol by simply modifying a step of the protocol. Finally, we compare the communication/computation complexity of the unauthenticated and authenticated versions of our protocol with previously known protocols and show that they compare favourably with them.
机译:无线自组织网络的特殊性质和约束条件使得在所有节点之间建立组密钥成为一项艰巨而艰巨的任务。因此,必须考虑到计算和通信效率,非常仔细地选择涉及网络中所有节点的组密钥协议协议的执行。在本文中,我们提出了一种有效的组密钥协商协议,该协议特别适用于能量受限,动态演进的无线自组网。网络的拓扑结构反映在由小型集群组成的结构中。该群集允许基于配对同步执行高效的三方密钥协商协议。所需的计算对于设备而言很简单,交换的消息的大小最小,并且每个节点中所需的存储内存非常小。所提出的协议实现了良好的能量平衡并且非常灵活,因为通过简单地修改协议的步骤就可以将其用作贡献性,非贡献性,未认证或已认证的协议。最后,我们将未经身份验证和经过身份验证的协议版本与先前已知的协议的通信/计算复杂度进行了比较,并显示它们与它们的比较优势。

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