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Improving network performance, security and robustness in hybrid wireless networks using a satellite overlay.

机译:使用卫星覆盖提高混合无线网络的网络性能,安全性和鲁棒性。

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摘要

In this thesis we propose that the addition of a satellite overlay to large or dense wireless networks will result in improvement in application performance and network reliability, and also enable efficient security solutions that are well-suited for wireless nodes with limited resources. We term the combined network as a hybrid wireless network. Through analysis, network modeling and simulation, we quantify the improvement in end-to-end performance in such networks, compared to flat wireless networks.;We also propose a new analytical method for modeling and estimating the performance of hybrid wireless networks. We create a loss network model for hybrid networks using the hierarchical reduced loss network model, adapted for packet-switched networks. Applying a fixed point approximation method on the set of relations modeling the hierarchical loss network, we derive a solution that converges to a fixed point for the parameter set. We analyze the sensitivity of the performance metric to variations in the network parameters by applying Automatic Differentiation to the performance model. We thus develop a method for parameter optimization and sensitivity analysis of protocols for designing hybrid networks.;We investigate how the satellite overlay can help to implement better solutions for secure group communications in hybrid wireless networks. We propose a source authentication protocol for multicast communications that makes intelligent use of the satellite overlay, by modifying and extending TESLA certificates. We also propose a probabilistic non-repudiation technique that uses the satellite as a proxy node. We describe how the authentication protocol can be integrated with a topology-aware hierarchical multicast routing protocol to design a secure multi-cast routing protocol that is robust to active attacks.;Lastly, we examine how the end-to-end delay is adversely affected when IP Security protocol (IPSEC) and Secure Socket Layer protocol (SSL) are applied to unicast communications in hybrid networks. For network-layer security with low delay, we propose the use of the Layered IPSEC protocol, with a modified Internet Key Exchange protocol. For secure web browsing with low delay, we propose the Dual-mode SSL protocol. We present simulation results to quantify the performance improvement with our proposed protocols, compared to the traditional solutions.
机译:在本文中,我们建议将卫星覆盖图添加到大型或密集无线网络中将导致应用程序性能和网络可靠性的提高,并且还可以提供适用于资源有限的无线节点的高效安全解决方案。我们将组合网络称为混合无线网络。通过分析,网络建模和仿真,我们量化了与平板无线网络相比在此类网络中端到端性能的提高。我们还提出了一种新的分析方法,用于建模和估计混合无线网络的性能。我们使用适用于分组交换网络的分层减少损失网络模型为混合网络创建损失网络模型。在对层次损失网络建模的关系集上应用不动点近似方法,我们导出了一个收敛到参数集不动点的解决方案。通过对性能模型应用自动微分,我们分析了性能指标对网络参数变化的敏感性。因此,我们开发了一种用于设计混合网络的协议的参数优化和敏感性分析的方法。;我们研究了卫星覆盖如何帮助实现混合无线网络中安全组通信的更好解决方案。我们提出了一种用于多播通信的源认证协议,该协议通过修改和扩展TESLA证书来智能利用卫星覆盖。我们还提出了一种使用卫星作为代理节点的概率不可否认技术。我们描述了如何将身份验证协议与拓扑感知的分层多播路由协议集成在一起,以设计一种对主动攻击具有鲁棒性的安全多播路由协议。最后,我们研究了端对端延迟如何受到不利影响将IP安全协议(IPSEC)和安全套接字层协议(SSL)应用于混合网络中的单播通信时。对于低延迟的网络层安全性,我们建议使用带有修改后的Internet密钥交换协议的分层IPSEC协议。为了实现低延迟的安全Web浏览,我们建议使用双模式SSL协议。与传统解决方案相比,我们提供了仿真结果来量化我们提出的协议的性能改进。

著录项

  • 作者

    Roy-Chowdhury, Ayan.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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