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Optimal response to attacks on the open science grid

机译:对开放科学网格上的攻击的最佳响应

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摘要

Cybersecurity is a growing concern, especially in open grids, where attack propagation is easy because of prevalent collaborations among thousands of users and hundreds of institutions. The collaboration rules that typically govern large science experiments as well as social networks of scientists span across the institutional security boundaries. A common concern is that the increased openness may allow malicious attackers to spread more readily around the grid. We consider how to optimally respond to attacks in open grid environments. To show how and why attacks spread more readily around the grid, we first discuss how collaborations manifest themselves in the grids and form the collaboration network graph, and how this collaboration network graph affects the security threat levels of grid participants. We present two mixed-integer program (MIP) models to find the optimal response to attacks in open grid environments, and also calculate the threat level associated with each grid participant. Given an attack scenario, our optimal response model aims to minimize the threat levels at unaffected participants while maximizing the uninterrupted scientific production (continuing collaborations). By adopting some of the collaboration rules (e.g., suspending a collaboration or shutting down a site), the model finds optimal response to subvert an attack scenario.
机译:网络安全日益受到关注,尤其是在开放式网格中,由于成千上万的用户和数百个机构之间的广泛协作,攻击传播很容易。通常管理大型科学实验以及科学家社交网络的协作规则跨越了机构安全边界。人们普遍担心的是,开放程度的提高可能使恶意攻击者更容易在网格周围传播。我们考虑如何在开放网格环境中最佳地响应攻击。为了显示攻击如何以及为什么攻击更容易在网格中传播,我们首先讨论协作如何在网格中表现出来并形成协作网络图,以及此协作网络图如何影响网格参与者的安全威胁级别。我们提出了两个混合整数程序(MIP)模型,以找到对开放网格环境中的攻击的最佳响应,并计算与每个网格参与者相关联的威胁级别。在给定攻击场景的情况下,我们的最佳响应模型旨在将未受影响的参与者的威胁级别降至最低,同时最大化不间断的科学成果(持续合作)。通过采用某些协作规则(例如,暂停协作或关闭站点),该模型可以找到最佳的响应方式来颠覆攻击情形。

著录项

  • 来源
    《Computer networks》 |2011年第1期|p.61-73|共13页
  • 作者单位

    Fermi National Accelerator Laboratory. Batavia, IL 60510. United States;

    Mathematics and Computer Science Division, Argonne National Laboratory, Argonne, IL 60439, United States;

    Department of Industrial and Systems Engineering, University of Wisconsin-Madison, Madison, WI 53706, United States;

    Mathematics and Computer Science Division, Argonne National Laboratory, Argonne, IL 60439, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cybersecurity; optimization; network; multiobjective; integer optimization;

    机译:网络安全;优化;网络;多目标;整数优化;

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