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A shared secret-based algorithm for securing the OLSR routing protocol

机译:基于共享机密的算法,用于保护OLSR路由协议

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摘要

The strongest feature of ad hoc networks is its capability to be rapidly deployed anywhere and anytime without relying on a pre-existing infrastructure. From there, ad hoc networks offer the advantages to be auto-organized, ubiquitous, dynamic and completely autonomous. As a counter part, securing them becomes a more difficult task, especially because of the absence of centralized entities in the network. Inevitably, the security problem presents currently a hot topic raising more and more challenges within industrials and researchers, and many interesting securing solutions were meanwhile proposed, omitting however to suit to ad hoc networks characteristics and therefore disadvantaging them. In this paper, we propose a securing scheme for the OLSR routing protocol based on the secret sharing idea. We initially expose the general characteristics and the security problems related to ad hoc routing protocols. We then address the security requirements of ad hoc routing protocols and the security requirements we focus on. Finally, we define our completely and distributed securing algorithm based on threshold cryptography. A primary main conception objective being to suit as much as possible to ad hoc networks characteristics by avoiding as much as possible assumptions contradictory with the auto-organized and dynamic nature of ad hoc networks. Simulation results depict the additional delay due to security enhancements. Results show that this delay stills suitable to OLSR routing specifications.
机译:ad hoc网络的最强功能是无需依赖现有基础结构即可在任何地方,任何时间快速部署的功能。从这里开始,ad hoc网络提供了自动组织,无处不在,动态和完全自治的优势。作为对策,保护它们成为一项更加困难的任务,尤其是由于网络中缺少集中式实体。安全问题不可避免地成为当前一个热门话题,在工业界和研究人员中提出了越来越多的挑战,同时提出了许多有趣的安全解决方案,但是忽略了特定网络的特性,因此不利于它们。本文提出了一种基于秘密共享思想的OLSR路由协议安全方案。我们首先介绍了与临时路由协议有关的一般特征和安全问题。然后,我们解决临时路由协议的安全要求以及我们关注的安全要求。最后,我们定义了基于阈值密码的完全分布式的安全算法。一个主要的主要概念目标是,通过避免尽​​可能多的假设与ad hoc网络的自动组织和动态性质相矛盾,尽可能地适应ad hoc网络的特性。仿真结果描述了由于安全性增强而导致的额外延迟。结果表明,此延迟仍然适合OLSR路由规范。

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