首页> 外文会议>18th International Conference on Telecommunications, 2011 >Combating persistent adversaries in wireless sensor networks using directional antennas
【24h】

Combating persistent adversaries in wireless sensor networks using directional antennas

机译:使用定向天线与无线传感器网络中的持久对手作战

获取原文

摘要

Security is an important property in applications offering services in mission-critical areas, such as in healthcare, military, transportation, etc. Wireless sensor networks (WSN) support the mission of these applications by monitoring the environment and reporting observations to appropriate authorities that are responsible for decision-making. Often, their operation can be at risk by adversaries that launch attacks against the WSN with the aim of compromising the reliability and availability of the network and the respective application. The outcome of an attack highly depends on the experience of the adversary and his capabilities in terms of programming skills, security knowledge and resources. From the network perspective, the challenge is to reliably recover to a normal operation as soon as the adversary is been detected and allow for packet delivery to destination. The challenge is even greater in the presence of adversaries that adapt their intrusion strategy to break the deployed recovery countermeasures and continue affecting the network. Proposed recovery countermeasures typically assume the use of omni-directional antennas, which cannot take advantage of antenna directivity in order to manipulate communication paths between WSN nodes for the purpose of (physically) bypassing an adversary. This paper presents an intrusion recovery protocol in WSNs that uses directional antennas to create controlled communication paths, thus routing, and enhancing the reliability, self-healingness and resilience of the network. The proposed protocol is implemented within the AODV context and evaluated using ns-2. We demonstrate the effectiveness of the proposed protocol to deliver packets to the destination in the presence of multiple persistent adversaries that deploy different types of simple to extended attacks.
机译:安全性是在关键任务领域(例如医疗保健,军事,运输等)中提供服务的应用程序中的重要属性。无线传感器网络(WSN)通过监视环境并将观察结果报告给适当的主管部门来支持这些应用程序的任务负责决策。通常,攻击者可能会攻击针对WSN的攻击,从而损害网络及其相应应用程序的可靠性和可用性,因此,其操作可能会受到威胁。攻击的结果在很大程度上取决于对手的经验及其在编程技能,安全知识和资源方面的能力。从网络角度来看,挑战是一旦检测到对手就可靠地恢复到正常操作,并允许将数据包传递到目的地。在对手调整其入侵策略以打破已部署的恢复对策并继续影响网络的情况下,挑战更大。拟议的恢复对策通常假定使用全向天线,该天线不能利用天线方向性来操纵WSN节点之间的通信路径,以(物理上)绕过对手。本文提出了一种WSN中的入侵恢复协议,该协议使用定向天线创建受控的通信路径,从而进行路由,并增强了网络的可靠性,自我修复能力和弹性。所提出的协议在AODV上下文中实现,并使用ns-2进行评估。我们证明了所提出的协议在存在多个部署不同类型的简单攻击到扩展攻击的持久性对手的情况下将数据包传递到目的地的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号