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首页> 外文期刊>IEEE Transactions on Automatic Control >State-Secrecy Codes for Networked Linear Systems
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State-Secrecy Codes for Networked Linear Systems

机译:网络线性系统的状态保密代码

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In this paper, we study the problem of remote state estimation, in the presence of a passive eavesdropper. An authorized user estimates the state of an unstable linear plant, based on the packets received from a sensor, while the packets may also be intercepted by the eavesdropper. Our goal is to design a coding scheme at the sensor, which encodes the state information, in order to impair the eavesdropper's estimation performance while enabling the user to successfully decode the sent messages. We introduce a novel class of codes, termed State-Secrecy Codes, which use acknowledgment signals from the user and apply linear time-varying transformations to the current and previously received states. By exploiting the properties of the system's process noise, the channel physical model, and the dynamics, these codes manage to be fast, efficient, and suitable for real-time dynamical systems. We prove that under minimal conditions, State-Secrecy Codes achieve perfect secrecy, namely the eavesdropper's minimum mean square error (mmse) grows unbounded almost surely, whereas the user's estimation performance is optimal. These conditions only require that at least once, the user receives the corresponding packet while the eavesdropper fails to intercept it. Even one occurrence of this event renders the eavesdropper's mmse unbounded with asymptotically optimal rate of increase. State-Secrecy Codes are provided and studied for two cases, first, when direct state measurements are available and second, when we only have output measurements. The theoretical results are illustrated in simulations.
机译:在本文中,我们研究了远程状态估计的问题,在存在被动窃听器时。授权用户基于从传感器接收的分组估计不稳定的线性设备的状态,而分组也可以被窃听器拦截。我们的目标是在传感器上设计一个编码方案,该编码方案编码状态信息,以损害窃听者的估计性能,同时使用户能够成功解码发送的消息。我们介绍了一种新颖的代码,称为状态保密代码,该代码使用来自用户的确认信号并将线性时变换应用于当前和先前接收的状态。通过利用系统的过程噪声,信道物理模型和动态的性质,这些代码可以快速,高效,适用于实时动态系统。我们证明,在最小的条件下,国家保密代码实现了完美的保密,即窃听者的最小均线误差(MMSE)几乎肯定地增长,而用户的估计性能是最佳的。这些条件仅要求至少一次,用户在窃听器无法拦截时接收相应的数据包。即使是一次这个事件也会使窃听者的MMSE呈渐近的最佳增长率呈现。提供并研究了两个案例的状态保密代码,首先,当直接状态测量可用时,当我们只有输出测量时,请执行。理论结果如模拟所示。

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