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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Static and Dynamic 4-Way Handshake Solutions to Avoid Denial of Service Attack in Wi-Fi Protected Access and IEEE 802.11i
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Static and Dynamic 4-Way Handshake Solutions to Avoid Denial of Service Attack in Wi-Fi Protected Access and IEEE 802.11i

机译:静态和动态4向握手解决方案,可避免Wi-Fi保护访问和IEEE 802.11i中的拒绝服务攻击

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This paper focuses on WPA and IEEE 802.11i protocols that represent two important solutions in the wireless environment. Scenarios where it is possible to produce a DoS attack and DoS flooding attacks are outlined. The last phase of the authentication process, represented by the 4-way handshake procedure, is shown to be unsafe from DoS attack. This can produce the undesired effect of memory exhaustion if a flooding DoS attack is conducted. In order to avoid DoS attack without increasing the complexity of wireless mobile devices too much and without changing through some further control fields of the frame structure of wireless security protocols, a solution is found and an extension of WPA and IEEE 802.11 is proposed. A protocol extension with three “static” variants and with a resource-aware dynamic approach is considered. The three enhancements to the standard protocols are achieved through some simple changes on the client side and they are robust against DoS and DoS flooding attack. Advantages introduced by the proposal are validated by simulation campaigns and simulation parameters such as attempted attacks, successful attacks, and CPU load, while the algorithm execution time is evaluated. Simulation results show how the three static solutions avoid memory exhaustion and present a good performance in terms of CPU load and execution time in comparison with the standard WPA and IEEE 802.11i protocols. However, if the mobile device presents different resource availability in terms of CPU and memory or if resource availability significantly changes in time, a dynamic approach that is able to switch among three different modalities could be more suitable.
机译:本文重点介绍WPA和IEEE 802.11i协议,它们代表了无线环境中的两个重要解决方案。概述了可能产生DoS攻击和DoS泛洪攻击的方案。以四次握手过程表示的身份验证过程的最后阶段显示,对DoS攻击是不安全的。如果进行大量的DoS攻击,这可能会产生不良的内存耗尽效果。为了避免DoS攻击而又不增加无线移动设备的复杂性并且不改变无线安全协议的帧结构的其他控制字段,找到了一种解决方案并提出了WPA和IEEE 802.11的扩展。考虑了具有三个“静态”变体和资源感知动态方法的协议扩展。通过在客户端进行一些简单的更改就可以实现对标准协议的三项增强,它们具有抵御DoS和DoS泛洪攻击的强大功能。该提案引入的优势通过仿真活动和仿真参数(例如尝试攻击,成功攻击和CPU负载)进行了验证,同时评估了算法执行时间。仿真结果表明,与标准WPA和IEEE 802.11i协议相比,这三种静态解决方案如何避免内存耗尽并在CPU负载和执行时间方面表现出良好的性能。但是,如果移动设备在CPU和内存方面表现出不同的资源可用性,或者资源可用性随时间发生显着变化,则能够在三种不同模式之间切换的动态方法可能会更合适。

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