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An interactive distributed simulation framework with application to wireless networks and intrusion detection.

机译:交互式分布式仿真框架,可应用于无线网络和入侵检测。

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摘要

In this dissertation, we describe the portable, open-source distributed simulation framework (WINDS) targeting simulations of wireless network infrastructures that we have developed. We present the simulation framework which uses modular architecture and apply the framework to studies of mobility pattern effects, routing and intrusion detection mechanisms in simulations of large-scale wireless ad hoc, infrastructure, and totally mobile networks. The distributed simulations within the framework execute seamlessly and transparently to the user on a symmetric multiprocessor cluster computer or a network of computers with no modifications to the code or user objects. A visual graphical interface precisely depicts simulation object states and interactions throughout the simulation execution, giving the user full control over the simulation in real time. The network configuration is detected by the framework, and communication latency is taken into consideration when dynamically adjusting the simulation clock, allowing the simulation to run on a heterogeneous computing system. The simulation framework is easily extensible to multi-cluster systems and computing grids. An entire simulation system can be constructed in a short time, utilizing user-created and supplied simulation components, including mobile nodes, base stations, routing algorithms, traffic patterns and other objects. These objects are automatically compiled and loaded by the simulation system, and are available for dynamic simulation injection at runtime.; Using our distributed simulation framework, we have studied modern intrusion detection systems (IDS) and assessed applicability of existing intrusion detection techniques to wireless networks. We have developed a mobile agent-based IDS targeting mobile wireless networks, and introduced load-balancing optimizations aimed at limited-resource systems to improve intrusion detection performance. Packet-based monitoring agents of our IDS employ a CASE-based reasoner engine that performs fast lookups of network packets in the existing SNORT-based intrusion rule-set. Experiments were performed using the intrusion data from MIT Lincoln Laboratories studies, and executed on a cluster computer utilizing our distributed simulation system.
机译:在本文中,我们描述了针对我们开发的无线网络基础设施的仿真的便携式,开放源代码的分布式仿真框架(WINDS)。我们提出了使用模块化体系结构的仿真框架,并将该框架应用于大规模无线ad hoc,基础设施和完全移动网络的仿真中的移动性模式效果,路由和入侵检测机制的研究。框架内的分布式模拟在对称多处理器群集计算机或计算机网络上对用户无缝且透明地执行,而无需修改代码或用户对象。可视化的图形界面精确地描述了整个仿真执行过程中的仿真对象状态和交互,从而使用户可以实时完全控制仿真。通过框架检测网络配置,并在动态调整仿真时钟时考虑通信延迟,从而允许仿真在异构计算系统上运行。该仿真框架可以轻松扩展到多集群系统和计算网格。利用用户创建和提供的仿真组件,包括移动节点,基站,路由算法,流量模式和其他对象,可以在短时间内构建整个仿真系统。这些对象由仿真系统自动编译和加载,并且可在运行时用于动态仿真注入。使用我们的分布式仿真框架,我们研究了现代入侵检测系统(IDS)并评估了现有入侵检测技术在无线网络中的适用性。我们已经开发了针对移动无线网络的基于移动代理的IDS,并针对有限资源的系统引入了负载平衡优化,以提高入侵检测性能。我们IDS的基于数据包的监视代理程序使用基于CASE的推理机,该引擎在现有的基于SNORT的入侵规则集中执行网络数据包的快速查找。实验是使用来自MIT Lincoln实验室研究的入侵数据进行的,并使用我们的分布式仿真系统在群集计算机上执行。

著录项

  • 作者

    Kachirski, Oleg.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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