A sample identifying complexity has been introduced in the previous study to capture an adversary's estimation error of system identification. The complexity plays a crucial role in defining the security of encrypted control systems and designing a controller and security parameter for the systems. This study proposes a novel sample identifying complexity of encrypted control systems under an adversary who identifies system parameters using a least squares method. The proposed complexity is characterized by a controllability Gramian and ratio of identification input variance to the noise variance. We examine the tightness of the proposed complexity and its changes associated with the Gramian and variance ratio through numerical simulations. The simulation results demonstrate that the proposed complexity captures a behavior of estimation error with a sufficient level. Moreover, it confirmed that the effect of controllability Gramian in the proposed complexity becomes larger as the variance ratio increases.
翻译:在前一次研究中引入了确定复杂性的样本,以捕捉对手对系统识别的估计错误。复杂性在确定加密控制系统的安全性和设计系统控制和安全参数方面发挥着关键作用。本研究提出了在对手之下确定加密控制系统的复杂性的新样本,对手使用最小方位方法确定系统参数。拟议的复杂性的特征是可控性格拉姆以及识别输入与噪音差异之间的比例差异。我们通过数字模拟来审查拟议复杂性的紧凑性及其与格拉姆和差异比率有关的变化。模拟结果表明,拟议的复杂程度足以捕捉到估计错误的行为。此外,它确认,随着差异率的增加,拟议复杂性中的可控性格拉姆尼恩的影响会更大。