在MANET场景中支持周期性、强的重新身份验证

M. Salmanian, Jiangxin Hu, Li Pan, P. Mason, Ming Li
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引用次数: 6

摘要

移动自组网(MANET)中节点对之间通过强认证建立的安全关联(SA)在路由断开时可能会丢失。相反,在良好的通道条件和稳定的拓扑结构下,路由协议(如优化链路状态路由(OLSR))不会定期刷新路由,这样一来,绑定到这些路由的SA可能会变得陈旧和过时。在本文中,我们通过引入定义sa生存期的计时器以及强认证的周期性来演示sa的维护与链路状态条件的解耦。该定时器在状态机中实现,状态机还管理身份验证过程的其他方面。我们使用信任增强路由表(TRT)来实现这些更改,TRT是OLSR路由表的扩展。状态机和TRT在一系列的MANET模拟中进行了试验,其中网络的拓扑结构保持静态,但信道条件逐渐变得不那么有利。通过改变状态机中允许的SA持续时间计时器,我们能够度量在不同通道条件下维护SA的相关开销(成本)。我们表明,与我们的实现相关的成本通常远低于在相同条件下将sa连接到标准OLSR路由的成本。由于SA的允许生存期是一个安全参数,因此我们的结果有效地展示了模型的安全性和开销之间的权衡。我们的实现被设计为可以进一步且容易地扩展,以考虑额外的安全参数作为输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supporting periodic, strong re-authentication in MANET scenarios
A Security Association (SA), established by strong authentication, between a node pair in a Mobile Ad hoc Network (MANET) could be lost when its route is disconnected. In contrast, in good channel conditions and stable topology, routing protocols such as the Optimized Link State Routing (OLSR) do not refresh routes periodically, and in doing so, an SA bound to these routes could become stale and out of date. In this paper we demonstrate a decoupling of the maintenance of the SAs from the link state conditions by introducing a timer that defines the lifetime of the SAs, as well as the periodicity of strong authentications. This timer is implemented within a state machine that also manages other aspects of the authentication process. We implement these changes using a Trust-enhanced Routing Table (TRT), an extension of the OLSR routing table. The state machine and TRT are trialed in a series of MANET simulations in which the topology of the network remains static but channel conditions are made progressively less favorable. By varying the allowed SA duration timer within the state machine, we are able to measure the overhead (cost) associated with maintaining SAs in varying channel conditions. We show that the costs associated with our implementation are generally far lower than if we were to link SAs to standard OLSR routes in the same conditions. Since the allowed lifetime of SA is a security parameter, our results effectively demonstrate a trade-off between security and overhead for our model. Our implementation is designed to be further, and easily, extended to account for additional security parameters as input.
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