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Probabilistic denial of service attack against remote state estimation over a Markov channel in cyber-physical systems

机译:网络物理系统中通过马尔可夫信道对远程状态估计的概率拒绝服务攻击

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Remote state estimation in which wireless sensors transmit data to a remote device for estimating the state of a physical process is an important issue in cyber-physical systems (CPS). Since the wireless channel is open-access, adversaries can easily launch denial-of-service (DoS) attacks and cause significant estimation performance deterioration, regardless of the use of cryptographic techniques for sensor data security. Most existing studies on DoS attacks in CPS often assume perfect channels. In this paper, we study the impact and strategies of DoS attacks in a more practical scenario where the wireless channel suffer from stochastic background traffics. We propose a probabilistic attack scheme in which the attacker senses the channel state and only executes DoS when the sensing result indicates an idle channel. Specifically, with the proposed probabilistic attack scheme, the attacker launches DoS with a certain probability once the channel is sensed idle. We theoretically analyze the stability of the estimation process and investigate the problem of optimal attack strategy under attackers energy constraint.
机译:在无线物理系统(CPS)中,无线传感器将数据传输到远程设备以估计物理过程状态的远程状态估计是一个重要的问题。由于无线通道是开放访问的,因此,无论使用哪种加密技术来保护传感器数据,攻击者都可以轻松发起拒绝服务(DoS)攻击并导致估计性能显着下降。现有的大多数有关CPS中DoS攻击的研究通常都采用完美的渠道。在本文中,我们研究了在更实际的情况下DoS攻击的影响和策略,其中无线信道遭受随机的背景流量。我们提出一种概率攻击方案,其中攻击者感知信道状态,仅在感知结果表明信道空闲时才执行DoS。具体而言,利用所提出的概率攻击方案,一旦检测到信道空闲,攻击者便以一定的概率启动DoS。我们从理论上分析了估计过程的稳定性,并研究了在攻击者能量约束下的最优攻击策略问题。

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