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Algorithmic Detection of Adversarial Attacks on Message Transmission and ACK/NACK Feedback

机译:对消息传输和ACK / NACK反馈的对抗攻击的算法检测

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For communication systems there is a recent trend towards shifting functionalities from the physical layer to higher layers by enabling software-focused solutions. Having obtained a (physical layer-based) description of the communication channel, such approaches exploit this knowledge to enable various services by subsequently processing it on higher layers. For this it is a crucial task to first find out in which state the underlying communication channel is. This paper develops a framework based on Turing machines and studies whether or not it is in principle possible to algorithmically decide in which state the communication system is. It is shown that there exists no Turing machine that takes the physical description of the communication channel as an input and solves a non-trivial classification task. Subsequently, this general result is used to study communication under adversarial attacks and it is shown that it is impossible to algorithmically detect denial-of-service (DoS) attacks on the transmission. Jamming attacks on ACK/NACK feedback cannot be detected as well and, in addition, ACK/NACK feedback is shown to be useless for the detection of DoS attacks on the actual message transmission.
机译:对于通信系统,通过启用专注于软件的解决方案,存在最近朝向从物理层转换到更高层的功能的趋势。获得了(基于物理层的)通信信道的描述,这种方法利用了这些知识来通过随后在更高层上处理它来实现各种服务。为此,它是首先找出统治潜在的通信渠道的重要任务。本文基于图灵机的框架,研究是否原则上是可以算法决定通信系统的原则上。结果表明,没有将通信信道的物理描述作为输入,并且解决了非微不足道的分类任务。随后,该一般结果用于研究对抗性攻击下的通信,并表明不可能在传输上算法检测拒绝服务(DOS)攻击。也无法检测到对ACK / NACK反馈的干扰攻击,此外,ACK / NACK反馈显示用于检测对实际消息传输的DOS攻击。

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