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A mixed-integer programming approach for locating jamming devices in a flow-jamming attack

机译:混合整数编程方法,用于在流干扰攻击中定位干扰设备

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摘要

The ubiquitous nature of wireless networks makes them increasingly prone to jamming attacks as such attacks become more sophisticated. In this paper, we seek to gain understanding about a particular type of jamming attack: the flow-jamming attack. Toward this end, we provide a mixed-integer programming model for optimizing the location of jamming devices for flow-jamming attacks. An accelerated Benders' decomposition approach was used to solve the model. We solved the problem for two realistic networks and 18 randomly generated networks and found that the Benders' approach was computationally faster than CPLEX for nearly all the problem instances, particularly for larger problems with 1440 binary variables. The experimental results show that optimally locating jamming devices can increase the impact of flow-jamming attacks. Specifically, as the number of possible locations increases the jammers' efficacy increases as well, but there is a clear point of diminishing returns. Also, adding lower-powered jammers to work in conjunction with higher powered jammers significantly increases overall efficacy in spite of the power difference. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着无线网络变得越来越复杂,无线网络无处不在的性质使它们越来越容易受到干扰。在本文中,我们试图获得对一种特定类型的干扰攻击的理解:流干扰攻击。为此,我们提供了一种混合整数编程模型,用于优化针对流干扰攻击的干扰设备的位置。使用了加速的Benders分解方法来求解模型。我们为两个现实网络和18个随机生成的网络解决了该问题,发现对于几乎所有问题实例,Benders的方法在计算上都比CPLEX快,尤其是对于具有1440二进制变量的较大问题。实验结果表明,最佳定位干扰设备可以增加流干扰攻击的影响。具体而言,随着可能位置数量的增加,干扰机的功效也随之提高,但存在明显的收益递减点。而且,尽管功率有所不同,但添加低功率干扰器与高功率干扰器一起工作仍会显着提高整体效率。 (C)2018 Elsevier Ltd.保留所有权利。

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