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A Novel En-Route Filtering Scheme Against False Data Injection Attacks in Cyber-Physical Networked Systems

机译:网络物理网络系统中一种针对虚假数据注入攻击的新型途中过滤方案

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摘要

In Cyber-Physical Networked Systems (CPNS), the adversary can inject false measurements into the controller through compromised sensor nodes, which not only threaten the security of the system, but also consume network resources. To deal with this issue, a number of en-route filtering schemes have been designed for wireless sensor networks. However, these schemes either lack resilience to the number of compromised nodes or depend on the statically configured routes and node localization, which are not suitable for CPNS. In this paper, we propose a Polynomial-based Compromise-Resilient En-route Filtering scheme (PCREF), which can filter false injected data effectively and achieve a high resilience to the number of compromised nodes without relying on static routes and node localization. PCREF adopts polynomials instead of Message Authentication Codes (MACs) for endorsing measurement reports to achieve resilience to attacks. Each node stores two types of polynomials: authentication polynomial and check polynomial, derived from the primitive polynomial, and used for endorsing and verifying the measurement reports. Through extensive theoretical analysis and experiments, our data shows that PCREF achieves better filtering capacity and resilience to the large number of compromised nodes in comparison to the existing schemes.
机译:在网络物理网络系统(CPNS)中,对手可以通过受损的传感器节点将错误的测量值注入到控制器中,这不仅威胁系统的安全性,而且消耗网络资源。为了解决这个问题,已经为无线传感器网络设计了许多路由过滤方案。但是,这些方案或者对受感染节点的数量缺乏弹性,或者取决于不适合CPNS的静态配置的路由和节点本地化。在本文中,我们提出了一种基于多项式的折衷-弹性路由过滤方案(PCREF),该方案可以有效过滤错误注入的数据,并在不依赖静态路由和节点本地化的情况下实现对受感染节点数量的高弹性。 PCREF采用多项式而不是消息认证码(MAC)来认可测量报告,以实现抵御攻击的能力。每个节点存储两种类型的多项式:身份验证多项式和检查多项式,从原始多项式派生,并用于认可和验证测量报告。通过广泛的理论分析和实验,我们的数据表明,与现有方案相比,PCREF具有更好的过滤能力和对大量受损节点的弹性。

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