攻击下低功耗损耗网络(RPL)路由协议:仿真与分析

Amal Hkiri, Mouna Karmani, Mohsen Machhout
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引用次数: 3

摘要

低功耗损耗网络路由协议(RPL)是物联网核心通信标准6LoWPAN的底层路由协议。在服务质量(QoS)、设备管理和能源效率方面,RPL击败了与之竞争的无线传感器和自组织路由协议。然而,由于未经身份验证或未加密的控制帧、集中的根控制器、受损或未经身份验证的设备等问题,一些攻击可能会威胁到网络。因此,在本文中,我们的目标是研究拓扑和资源攻击对RPL的影响。年代效率。Hello flood攻击、Increase Number攻击和reduce Rank攻击分别是资源攻击和拓扑攻击的三种形式。模拟是为了了解三种不同攻击对RPL性能指标的影响,包括端到端延迟(E2ED)、吞吐量、分组传输比(PDR)和平均功耗。研究结果表明,这三种攻击增加了E2ED,降低了PDR和网络吞吐量,降低了网络质量,进一步提高了网络节点的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Routing Protocol for low power and lossy networks (RPL) under Attack: Simulation and Analysis
Routing protocol for low power and lossy networks (RPL) is the underlying routing protocol of 6LoWPAN, a core communication standard for the Internet of Things. In terms of quality of service (QoS), device management, and energy efficiency, RPL beats competing wireless sensor and ad hoc routing protocols. However, several attacks could threaten the network due to the problem of unauthenticated or unencrypted control frames, centralized root controllers, compromised or unauthenticated devices. Thus, in this paper, we aim to investigate the effect of topology and Resources attacks on RPL.s efficiency. The Hello Flooding attack, Increase Number attack and Decrease Rank attack are the three forms of Resources attacks and Topology attacks respectively chosen to work on. The simulations were done to understand the impact of the three different attacks on RPL performances metrics including End-to-End Delay (E2ED), throughput, Packet Delivery Ratio (PDR) and average power consumption. The findings show that the three attacks increased the E2ED, decreased the PDR and the network throughput, and degrades the network’, which further raises the power consumption of the network nodes.
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