This paper considers the problem of set-based state estimation for linear time-invariant (LTI) systems under time-varying sensor attacks. Provided that the LTI system is stable and observable via every single sensor and that at least one sensor is uncompromised, we guarantee that the true state is always contained in the estimated set. We use zonotopes to represent these sets for computational efficiency. However, we show that intelligently designed stealthy attacks may cause exponential growth in the algorithm's worst-case complexity. We present several strategies to handle this complexity issue and illustrate our resilient zonotope-based state estimation algorithm on a rotating target system.
翻译:本文件考虑了在时间变化感应器攻击下对线性时变(LTI)系统的定基状态估计问题。如果LTI系统稳定,通过每个传感器都能看到,而且至少一个传感器未发生混杂,那么我们保证真实状态总是包含在估计的一组中。我们用zonootopes代表这些数据集的计算效率。然而,我们表明,智能设计的隐形攻击可能导致算法最复杂程度的指数增长。我们提出了若干战略来处理这一复杂问题,并展示了我们具有弹性的基于zonootope的星位估计算法,用于旋转目标系统。