A sample identifying complexity and a sample deciphering time have been introduced in a previous study to capture an estimation error and a computation time of system identification by adversaries. The quantities play a crucial role in defining the security of encrypted control systems and designing a security parameter. This study proposes an optimal security parameter for an encrypted control system under a network eavesdropper and a malicious controller server who attempt to identify system parameters using a least squares method. The security parameter design is achieved based on a modification of conventional homomorphic encryption for improving a sample deciphering time and a novel sample identifying complexity, characterized by controllability Gramians and the variance ratio of identification input to system noise. The effectiveness of the proposed design method for a security parameter is demonstrated through numerical simulations.
翻译:在之前的研究中,引入了样本识别复杂度和样本解密时间等指标来衡量敌手对控制系统进行参数识别的误差估计和计算时间。这些参数对定义加密控制系统的安全性和设计安全参数起着关键作用。本研究提出了一种针对网络窃听者和恶意服务端的加密控制系统的最优安全参数设计。窃听者和服务端试图使用最小二乘法来识别系统参数。安全参数的设计是基于传统同态加密的修改,以改善样本解密时间和新颖的样本识别复杂度,具体为可控性 Gram 矩阵和识别输入与系统噪声的方差比。通过数值模拟验证了所提出的安全参数设计方法的有效性。