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首页> 外文期刊>IEEE transactions on industrial informatics >Intercept Behavior Analysis of Industrial Wireless Sensor Networks in the Presence of Eavesdropping Attack
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Intercept Behavior Analysis of Industrial Wireless Sensor Networks in the Presence of Eavesdropping Attack

机译:窃听攻击下工业无线传感器网络的拦截行为分析

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This paper studies the intercept behavior of an industrial wireless sensor network (WSN) consisting of a sink node and multiple sensors in the presence of an eavesdropping attacker, where the sensors transmit their sensed information to the sink node through wireless links. Due to the broadcast nature of radio wave propagation, the wireless transmission from the sensors to the sink can be readily overheard by the eavesdropper for interception purposes. In an information-theoretic sense, the secrecy capacity of the wireless transmission is the difference between the channel capacity of the main link (from sensor to sink) and that of the wiretap link (from sensor to eavesdropper). If the secrecy capacity becomes nonpositive due to the wireless fading effect, the sensor’s data transmission could be successfully intercepted by the eavesdropper and an intercept event occurs in this case. However, in industrial environments, the presence of machinery obstacles, metallic frictions, and engine vibrations makes the wireless fading fluctuate drastically, resulting in the degradation of the secrecy capacity. As a consequence, an optimal sensor scheduling scheme is proposed in this paper to protect the legitimate wireless transmission against the eavesdropping attack, where a sensor with the highest secrecy capacity is scheduled to transmit its sensed information to the sink. Closed-form expressions of the probability of occurrence of an intercept event (called intercept probability) are derived for the conventional round-robin scheduling and the proposed optimal scheduling schemes. Also, an asymptotic intercept probability analysis is conducted to provide an insight into the impact of the sensor scheduling on the wireless security. Numerical results demonstrate that the proposed sensor scheduling scheme outperforms the conventional round-robin scheduling in terms of the intercept probability.
机译:本文研究了一个工业无线传感器网络(WSN)的拦截行为,该网络由一个接收节点和多个传感器组成,并且存在窃听攻击者,其中传感器通过无线链路将其感测到的信息传输到接收节点。由于无线电波传播的广播性质,从监听器到接收器的无线传输可以很容易地被窃听者窃听,以进行拦截。从信息论的角度来看,无线传输的保密容量是主链路(从传感器到接收器)和窃听链路(从传感器到窃听器)的信道容量之间的差。如果由于无线衰落效应而使保密能力变为非正数,则窃听者可以成功拦截传感器的数据传输,并在这种情况下发生拦截事件。但是,在工业环境中,机械障碍,金属摩擦和发动机振动的存在使无线衰落急剧波动,从而导致保密能力下降。因此,本文提出了一种最优的传感器调度方案,以保护合法的无线传输免受窃听攻击,在这种情况下,具有最高保密容量的传感器被调度为将其感测到的信息传输到接收器。对于常规的轮询调度和所提出的最佳调度方案,得出了截获事件发生概率(称为截获概率)的闭式表达式。此外,进行了渐近截距概率分析,以深入了解传感器调度对无线安全性的影响。数值结果表明,提出的传感器调度方案在拦截概率方面优于传统的轮询调度。

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