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Mitigating Forwarding misbehaviors in RPL-based low power and lossy networks

机译:基于RPL的低功耗和有损网络的转发不当行为者

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Low power and lossy networks (LLNs) are rapidly emerging as an important part of ubiquitous computing, and serving as a major building block for the communication infrastructure in the presence of Internet-of-Things (IoT). Routing protocol for low power and lossy networks (RPL) is a novel routing protocol standardized to enable the integration of resources-constrained devices into the Internet. However, due to the shared radio medium, the lack of physical protection and security requirements of inherent routing protocol, low power and lossy networks are admittedly threatened by diverse Denial-of-Service (DoS) attacks that primarily disrupt network protocols and interfere with on-going communications. In this paper, we propose a monitor-based approach, called CMD, to mitigate forwarding misbehaviors in LLNs running with RPL, where single or multiple malicious nodes randomly or strategically drop any incoming Data packet. The basic idea of the CMD is that each node monitors the forwarding behaviors of the preferred parent node to observe the packet loss rate, compares the observation result with the collected packet loss rate from one-hop neighbor nodes, and detects the forwarding misbehaviors of the preferred parent node. We evaluate the proposed scheme through extensive simulation experiments using OMNeT++ and compare its performance with the original RPL protocol and the existing two-step detection scheme. The simulation results show that the proposed scheme can not only improve the detection rate and packet delivery ratio (PDR) but also can reduce the energy consumption and isolation latency.
机译:低功耗和有损网络(LLNS)正在迅速涌现为无处不在的计算的重要组成部分,并作为通信基础设施的主要构建块,用于互联网(IOT)。低功耗和有损网络的路由协议(RPL)是一种用于标准化的新型路由协议,以使资源受限的设备集成到Internet中。但是,由于共享的无线电介质,缺乏固有路由协议,低功耗和有损网络的物理保护和安全要求都是通过各种拒绝服务(DOS)攻击来威胁,主要扰乱网络协议并干扰即通信。在本文中,我们提出了一种基于监视器的方法,称为CMD,以减轻使用RPL运行的LLN中的转发不当行为,其中单个或多个恶意节点随机或战略性地丢弃任何传入数据包。 CMD的基本思想是每个节点监视优选父节点的转发行为,以观察分组丢失率,将观察结果与来自单跳邻居节点的收集的分组丢失率进行比较,并检测到的转发不当行为首选父节点。我们通过使用OMNET ++的广泛模拟实验评估所提出的方案,并将其性能与原始RPL协议和现有的两步检测方案进行比较。仿真结果表明,该方案不仅可以提高检测率和分组传递比(PDR),还可以降低能量消耗和隔离等待时间。

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