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Secure Overlay Routing Using Key Pre-Distribution: A Linear Distance Optimization Approach

机译:使用密钥预分配的安全覆盖路由:一种线性距离优化方法

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Key pre-distribution algorithms have recently emerged as efficient alternatives of key management in today’s secure communications landscape. Secure routing techniques using key pre-distribution algorithms require special algorithms capable of finding optimal secure overlay paths. To the best of our knowledge, the literature of key pre-distribution systems is still facing a major void in proposing optimal overlay routing algorithms. In the literature work, traditional routing algorithms are typically used twice to find a NETWORK layer path from the source node to the destination and then to find required cryptographic paths. In this paper, we model the problem of secure routing using weighted directed graphs and propose a Boolean linear programming (LP) problem to find the optimal path. Albeit the fact that the solutions to Boolean LP problems are of much higher complexities, we propose a method for solving our problem in polynomial time. In order to evaluate its performance and security measures,we apply our proposed algorithm to a number of recently proposed symmetric and asymmetric key pre-distribution methods. The results show that our proposed algorithm offers great network performance improvements as well as security enhancements when augmenting baseline techniques.
机译:密钥预分发算法最近已成为当今安全通信领域中密钥管理的有效替代方法。使用密钥预分配算法的安全路由技术需要能够找到最佳安全覆盖路径的特殊算法。据我们所知,关键的预分配系统的文献在提出最佳覆盖路由算法方面仍然面临着巨大的空白。在文献工作中,传统的路由算法通常被两次使用,以找到从源节点到目的地的网络层路径,然后找到所需的密码路径。在本文中,我们使用加权有向图对安全路由问题进行建模,并提出了布尔线性规划(LP)问题以找到最佳路径。尽管布尔LP问题的解决方案具有更高的复杂性,但我们还是提出了一种在多项式时间内解决问题的方法。为了评估其性能和安全性措施,我们将我们提出的算法应用于许多最近提出的对称和非对称密钥预分配方法。结果表明,当增加基线技术时,我们提出的算法可提供出色的网络性能以及安全性增强。

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