基于深度学习长度预测的帧选择无线攻击

Gyungmin Kim, Yonggang Kim, Jaehyoung Park, Hyuk Lim
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引用次数: 1

摘要

无线攻击是指恶意活动产生无线干扰信号,干扰合法用户的数据传输。如果无线攻击的干扰持续时间较长,则很容易被检测到;这种攻击也消耗更多的能量来产生干扰信号。我们提出了一种帧选择性干扰来攻击对数据通信协议至关重要的短帧,如媒体访问控制(MAC)确认帧。一旦检测到无线信号,所提出的干扰器使用深度学习技术预测信号的持续时间,如果预期持续时间短于或等于某个阈值,则有选择地产生干扰信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frame-Selective Wireless Attack Using Deep-Learning-Based Length Prediction
Wireless attack refers to the malicious activity to generate a wireless jamming signal to interfere with the data transmission of legitimate users. If the jamming duration of a wireless attack is long, it can be easily detected; such attacks also consume more energy for generating the jamming signal. We propose a frame-selective jamming to attack shorter frames that are essential to data communication protocols such as media access control (MAC) acknowledgement frames. Once a wireless signal is detected, the proposed jammer predicts the duration of the signal using a deep learning technique and generates a jamming signal selectively if the duration is expected to be shorter than or equal to a certain threshold.
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