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Analysis of Jamming Effects on IEEE 802.11 Wireless Networks

机译:对IEEE 802.11无线网络的干扰影响分析

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IEEE 802.11 wireless transmissions suffer from a big security flaw as they are vulnerable to Denial of Service Attacks (DoS) which can degrade enormously their performance, especially their achieved throughput. One of the most harmful forms of these attacks is the jamming. In this paper, we provide an analytical model to study the effect of jamming on WLANs. Hence, we implement a physical layer jamming to show the effect at the MAC layer level (i.e. cross-layer jamming). Different jamming scenarios, with different modulation techniques such as DSSS and OFDM, were distinguished in order to evaluate the most accurately possible the effect of jamming on WLANs performance. Extensive simulations, under ns-3 tool, are conducted to validate the correctness of the theoretical analysis. We show that low rates (e.g. 1Mbps) are more resistant to jamming than high rates (e.g. 27Mbps). Also, we show that energy consumption when jamming depends only on communication time. Valuable observations are provided to derive solutions for jamming.
机译:IEEE 802.11无线传输存在很大的安全漏洞,因为它们容易受到拒绝服务攻击(DoS)的攻击,这会极大地降低其性能,尤其是其实现的吞吐量。这些攻击最有害的形式之一就是干扰。在本文中,我们提供了一个分析模型来研究干扰对WLAN的影响。因此,我们实施了物理层干扰来显示在MAC层级别上的效果(即跨层干扰)。区分了具有不同调制技术(例如DSSS和OFDM)的不同干扰情况,以便最准确地评估干扰对WLAN性能的影响。在ns-3工具下进行了广泛的仿真,以验证理论分析的正确性。我们显示,低速率(例如1Mbps)比高速率(例如27Mbps)更能抗干扰。此外,我们表明,干扰时的能耗仅取决于通信时间。提供了宝贵的意见,以得出解决问题的方法。

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