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SCOTRES: Secure Routing for IoT and CPS

机译:SCOTRES:物联网和CPS的安全路由

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摘要

Wireless ad-hoc networks are becoming popular due to the emergence of the Internet of Things and cyber-physical systems (CPSs). Due to the open wireless medium, secure routing functionality becomes important. However, the current solutions focus on a constrain set of network vulnerabilities and do not provide protection against newer attacks. In this paper, we propose SCOTRES-a trust-based system for secure routing in ad-hoc networks which advances the intelligence of network entities by applying five novel metrics. The energy metric considers the resource consumption of each node, imposing similar amount of collaboration, and increasing the lifetime of the network. The topology metric is aware of the nodes' positions and enhances load-balancing. The channel-health metric provides tolerance in periodic malfunctioning due to bad channel conditions and protects the network against jamming attacks. The reputation metric evaluates the cooperation of each participant for a specific network operation, detecting specialized attacks, while the trust metric estimates the overall compliance, safeguarding against combinatorial attacks. Theoretic analysis validates the security properties of the system. Performance and effectiveness are evaluated in the network simulator 2, integrating SCOTRES with the DSR routing protocol. Similar schemes are implemented using the same platform in order to provide a fair comparison. Moreover, SCOTRES is deployed on two typical embedded system platforms and applied on real CPSs for monitoring environmental parameters of a rural application on olive groves. As is evident from the above evaluations, the system provides the highest level of protection while retaining efficiency for real application deployments.
机译:由于物联网和网络物理系统(CPS)的出现,无线自组织网络变得越来越流行。由于开放的无线媒体,安全的路由功能变得很重要。但是,当前的解决方案着眼于一组受限的网络漏洞,无法提供针对新型攻击的保护。在本文中,我们提出了SCOTRES-一种用于自组织网络中安全路由的基于信任的系统,该系统通过应用五个新颖的指标来提高网络实体的智能性。能源度量标准考虑了每个节点的资源消耗,施加了相似的协作量并延长了网络的寿命。拓扑度量了解节点的位置并增强了负载平衡。通道运行状况度量标准可提供对由于不良通道状况而导致的定期故障的容忍度,并保护网络免受干扰攻击。信誉度量标准评估每个参与者针对特定网络操作的合作,检测特定的攻击,而信任度量标准评估总体合规性,以防止组合攻击。理论分析验证了系统的安全性。在网络模拟器2中评估性能和有效性,将SCOTRES与DSR路由协议集成在一起。为了提供公平的比较,使用相同的平台实施了类似的方案。此外,SCOTRES部署在两个典型的嵌入式系统平台上,并应用于实际的CPS,以监控橄榄树上农村应用的环境参数。从以上评估中可以明显看出,该系统提供了最高级别的保护,同时保留了实际应用程序部署的效率。

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