Toward optimal sniffer-channel assignment for reliable monitoring in multi-channel wireless networks

Dong-Hoon Shin, S. Bagchi, Chih-Chun Wang
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引用次数: 7

Abstract

This paper studies the optimal sniffer-channel assignment for reliable monitoring in multi-channel wireless networks. This problem concerns how to deploy certain sniffers in a network (and tune their channels) so that they can overhear and verify communication among the other nodes, referred to as normal nodes. Prior works have studied the optimal sniffer-channel assignment, but they assume perfect sniffers. However, in practice, sniffers may probabilistically make errors in monitoring, e.g., due to poor reception and compromise by an adversary. Hence, to maintain acceptable monitoring quality, a node needs to be overheard by multiple sniffers. We show that the optimal sniffer-channel assignment with sniffer redundancy differs fundamentally from the previous works due to the absence of a desirable property called submodularity. As a result, in our problem, the prior approximation algorithms no longer maintain their performance guarantees. We propose a variety of approximation algorithms based on two approaches-greedy strategy and relaxation-and-rounding approach. We present an empirical performance analysis of the proposed algorithms through simulations in practical networks. Our results suggest that our two algorithms show a performance trade-off between coverage and running time and are therefore suitable for different kinds of deployment.
多信道无线网络中嗅探器信道分配的优化研究
研究了多信道无线网络中嗅探器信道分配的优化问题。这个问题涉及如何在网络中部署某些嗅探器(并调优它们的通道),以便它们可以监听和验证其他节点(称为正常节点)之间的通信。先前的工作已经研究了最佳嗅探器信道分配,但他们假设完美嗅探器。然而,在实践中,嗅探器可能会在监视中犯错误,例如,由于接收不良和对手的妥协。因此,为了保持可接受的监视质量,一个节点需要被多个嗅探器窃听。我们表明,具有嗅探器冗余的最佳嗅探器信道分配与以前的工作有根本不同,因为缺乏称为子模块化的理想属性。因此,在我们的问题中,先验近似算法不再保持其性能保证。我们提出了基于贪心策略和松弛舍入方法的各种近似算法。我们通过在实际网络中的模拟对所提出的算法进行了经验性能分析。我们的结果表明,我们的两种算法显示了覆盖率和运行时间之间的性能权衡,因此适用于不同类型的部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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