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Fault-tolerant routing in adversarial mobile ad hoc networks: an efficient route estimation scheme for non-stationary environments

机译:对抗性移动自组织网络中的容错路由:用于非平稳环境的有效路由估计方案

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摘要

Designing routing schemes that would successfully operate in the presence of adversarial environments in Mobile Ad Hoc Networks (MANETs) is a challenging issue. In this paper, we discuss fault-tolerant routing schemes operating in a network with malfunctioning nodes. Most existing MANET protocols were postulated considering scenarios where all the mobile nodes in the ad hoc network function properly, and in an idealistic manner. However, adversarial environments are common in MANET environments, and misbehaving nodes certainly degrade the performance of these routing protocols. The need for fault tolerant routing protocols was identified to address routing in adversarial environments in the presence of faulty nodes by exploring redundancy-based strategies in networks. It turns out that since the nodes are mobile, the random variables encountered are non-stationary, implying that estimation methods for stationary variables are inadequate. Consequently, in this paper, we present a new fault-tolerant routing scheme that invokes a stochastic learning-based weak estimation procedure to enhance a route estimation phase, which, in turn, is then incorporated in a route selection phase. We are not aware of any reported method that utilizes non-traditional estimates to achieve the ranking of the possible paths. The scheme, which has been rigorously tested by simulation, has been shown to be superior to the existing algorithms.
机译:设计在移动自组织网络(MANET)中在对抗环境下能够成功运行的路由方案是一个具有挑战性的问题。在本文中,我们讨论了在节点故障的网络中运行的容错路由方案。假设大多数现有的MANET协议都考虑了自组织网络中所有移动节点以理想方式正常运行的情况。但是,对抗性环境在MANET环境中很常见,并且行为异常的节点肯定会降低这些路由协议的性能。通过探索网络中基于冗余的策略,确定了对容错路由协议的需求,以解决存在故障节点的对抗环境中的路由问题。事实证明,由于节点是可移动的,因此遇到的随机变量是非平稳的,这意味着平稳变量的估计方法不充分。因此,在本文中,我们提出了一种新的容错路由方案,该方案调用基于随机学习的弱估计程序来增强路由估计阶段,然后将其合并到路由选择阶段。我们尚不知道有任何报告的方法利用非传统估算来对可能路径进行排名。该方案已通过仿真进行了严格测试,已证明优于现有算法。

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