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Towards a fault-tolerant border gateway protocol.

机译:迈向容错边界网关协议。

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摘要

Today, the Internet has become the nerve center of our society. However, the Internet has been faulty, insecure, unreliable and unavailable, which causes much financial loss and many security problems. Studies show that the current de facto inter-domain routing protocol, Border Gateway Protocol (BGP), is vulnerable to various attacks, and routing-based attacks have unfortunately become quite feasible. Enhancing the fault-tolerance property of BGP is a very important and timely issue for the sake of overall Internet robustness and security. At least in the short term, it is very hard to deploy a new protocol or upgraded version of BGP within today's Internet because BGP has been widely used for years. Therefore, this dissertation focuses on providing practical solutions to existing problems by using existing BGP mechanisms and fault detection techniques. Challenges exist because BGP only propagates aggregated information instead of raw information; the dynamics of BGP are difficult to understand; there is no common operational practice, and the coordination and cooperation between different administrative domains is hard to achieve.; In this dissertation, BGP vulnerabilities have been analyzed from different perspectives. A set of critical BGP-related problems has been identified. One of them is called the Multiple Origin Autonomous System (MOAS) problem. A practical enhancement to BGP is presented to enable BGP to distinguish valid MOAS cases due to operational needs and invalid MOAS cases caused by faults. One key property of this solution is believed to be its resilience against any single point of failure. Solutions are also provided to solve other problems under the same framework and operations provided by BGP. Equally important, solutions have been fully evaluated against real BGP data or via simulations. The evaluation results show our solutions are very effective.
机译:今天,互联网已成为我们社会的神经中枢。但是,Internet出现故障,不安全,不可靠和不可用,这会造成很多财务损失和许多安全问题。研究表明,当前事实上的域间路由协议,边界网关协议(BGP)容易受到各种攻击,并且不幸的是,基于路由的攻击已变得相当可行。为了提高Internet的整体健壮性和安全性,增强BGP的容错属性是非常重要和及时的问题。至少在短期内,由于BGP已被广泛使用多年,因此很难在当今的Internet中部署BGP的新协议或升级版本。因此,本文致力于通过利用现有的BGP机制和故障检测技术为存在的问题提供实用的解决方案。挑战之所以存在,是因为BGP仅传播聚合信息,而不传播原始信息。 BGP的动态难以理解;没有通用的操作惯例,并且难以实现不同管理域之间的协调与合作。本文从不同角度对BGP漏洞进行了分析。已经确定了一组与BGP相关的关键问题。其中之一被称为多源自治系统(MOAS)问题。提出了一种实用的BGP增强功能,使BGP能够区分由于操作需要而导致的有效MOAS情况和由故障引起的无效MOAS情况。据信,该解决方案的一个关键特性是其对任何单点故障的恢复能力。还提供解决方案,以解决BGP提供的相同框架和操作下的其他问题。同样重要的是,已经针对真实的BGP数据或通过模拟对解决方案进行了全面评估。评估结果表明我们的解决方案非常有效。

著录项

  • 作者

    Zhao, Xiaoliang.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 155 p.
  • 总页数 155
  • 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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