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On the Routing Protocol Influence on the Resilience of Wireless Sensor Networks to Jamming Attacks

机译:路由协议对无线传感器网络抗干扰能力的影响

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摘要

In this work, we compare a recently proposed routing protocol, the multi-parent hierarchical (MPH) protocol, with two well-known protocols, the ad hoc on-demand distance vector (AODV) and dynamic source routing (DSR). For this purpose, we have developed a simulator, which faithfully reifies the workings of a given protocol, considering a fixed, reconfigurable ad hoc network given by the number and location of participants, and general network conditions. We consider a scenario that can be found in a large number of wireless sensor network applications, a single sink node that collects all of the information generated by the sensors. The metrics used to compare the protocols were the number of packet retransmissions, carrier sense multiple access (CSMA) inner loop retries, the number of nodes answering the queries from the coordinator (sink) node and the energy consumption. We tested the network under ordinary (without attacks) conditions (and combinations thereof) and when it is subject to different types of jamming attacks (in particular, random and reactive jamming attacks), considering several positions for the jammer. Our results report that MPH has a greater ability to tolerate such attacks than DSR and AODV, since it minimizes and encapsulates the network segment under attack. The self-configuring capabilities of MPH derived from a combination of a proactive routes update, on a periodic-time basis, and a reactive behavior provide higher resilience while offering a better performance (overhead and energy consumption) than AODV and DSR, as shown in our simulation results.
机译:在这项工作中,我们将最近提出的路由协议,多父级分层(MPH)协议与两个众所周知的协议即即需按需距离矢量(AODV)和动态源路由(DSR)进行了比较。为此,我们开发了一个模拟器,该模拟器可以根据参与者的数量和位置以及一般的网络状况,忠实地调整给定协议的工作效率,同时考虑到固定的,可重新配置的ad hoc网络。我们考虑一种可以在大量无线传感器网络应用程序中找到的场景,即一个汇聚节点,该节点收集传感器生成的所有信息。用于比较协议的指标包括数据包重传次数,载波侦听多路访问(CSMA)内环重试次数,回答来自协调器(宿)节点的查询的节点数以及能耗。我们在普通(无攻击)条件(及其组合)下以及在遭受不同类型的干扰攻击(尤其是随机和反应性干扰攻击)的情况下测试了网络,并考虑了干扰器的多个位置。我们的结果报告说,MPH比DSR和AODV具有更强的承受此类攻击的能力,因为它可以最小化并封装受攻击的网络段。 MPH的自我配置功能源自主动路由的定期更新,而被动行为的组合提供了比AODV和DSR更高的弹性,同时提供了更好的性能(开销和能耗),如图所示。我们的模拟结果。

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