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Redundancy Management of Multipath Routing for Intrusion Tolerance in Heterogeneous Wireless Sensor Networks

机译:异构无线传感器网络中入侵容忍的多路径路由冗余管理

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In this paper we propose redundancy management of heterogeneous wireless sensor networks (HWSNs), utilizing multipath routing to answer user queries in the presence of unreliable and malicious nodes. The key concept of our redundancy management is to exploit the tradeoff between energy consumption vs. the gain in reliability, timeliness, and security to maximize the system useful lifetime. We formulate the tradeoff as an optimization problem for dynamically determining the best redundancy level to apply to multipath routing for intrusion tolerance so that the query response success probability is maximized while prolonging the useful lifetime. Furthermore, we consider this optimization problem for the case in which a voting-based distributed intrusion detection algorithm is applied to detect and evict malicious nodes in a HWSN. We develop a novel probability model to analyze the best redundancy level in terms of path redundancy and source redundancy, as well as the best intrusion detection settings in terms of the number of voters and the intrusion invocation interval under which the lifetime of a HWSN is maximized. We then apply the analysis results obtained to the design of a dynamic redundancy management algorithm to identify and apply the best design parameter settings at runtime in response to environment changes, to maximize the HWSN lifetime.
机译:在本文中,我们提出了异构无线传感器网络(HWSN)的冗余管理,利用多路径路由在存在不可靠和恶意节点的情况下回答用户查询。我们的冗余管理的关键概念是在能耗与可靠性,及时性和安全性增益之间进行权衡,以最大化系统的使用寿命。我们将权衡公式化为优化问题,以动态确定最佳冗余级别以应用于多路径路由以实现入侵容忍,从而在延长使用寿命的同时最大化查询响应成功概率。此外,在将基于投票的分布式入侵检测算法应用于检测和驱逐HWSN中的恶意节点的情况下,我们考虑了此优化问题。我们开发了一种新颖的概率模型,以分析在路径冗余和源冗余方面的最佳冗余级别,以及在投票者数量和入侵调用间隔方面的最佳入侵检测设置,在这些情况下,HWSN的寿命得以最大化。然后,我们将获得的分析结果应用于动态冗余管理算法的设计,以在运行时识别和应用最佳设计参数设置以响应环境变化,从而最大化HWSN寿命。

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