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Guaranteed model-based fault detection in cyber-physical systems: A model invalidation approach

机译:网络物理系统中保证基于模型的故障检测:模型无效方法

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This paper presents a sound and complete fault detection approach for cyber-physical systems represented by hidden-mode switched affine models with time varying parametric uncertainty. The fault detection approach builds upon techniques from model invalidation. In particular, a set-membership approach is taken where the noisy input-output data is compared to the set of behaviors of a nominal model. As we show, this set-membership check can be reduced to the feasibility of a mixed-integer linear programming (MILP) problem, which can be solved efficiently by leveraging the state-of-the-art MILP solvers. In the second part of the paper, given a system model and a fault model, the concept of T-detectability is introduced. If a pair of system and fault models satisfies T-detectability property for a finite T, this allows the model invalidation algorithm to be implemented in a receding horizon manner, without compromising detection guarantees. In addition, the concept of weak-detectability is introduced which extends the proposed approach to a more expressive class of fault models that capture language constraints on the mode sequences. Finally, the efficiency of the approach is illustrated with numerical examples motivated by smart building radiant systems. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了隐藏模式切换仿射模型所代表的网络物理系统的声音和完整的故障检测方法,其随时间变化的参数不确定性。故障检测方法在模型无效的技术上构建。特别地,拍摄设定成员方法,其中将嘈杂的输入输出数据与标称模型的一组行为进行比较。正如我们所示,可以将该Set-Consepership检查减少到混合整数线性编程(MILP)问题的可行性,这可以通过利用最先进的MILP求解器有效地解决。在纸张的第二部分中,给定系统模型和故障模型,介绍了T检测性的概念。如果一对系统和故障模型满足有限T的T检测性属性,则允许模型无效算法以后退地平线方式实现,而不会影响检测保证。此外,介绍了弱检测性的概念,其将所提出的方法扩展到更具表现力的故障模型,该概念捕获模式序列上的语言限制。最后,用智能建筑物辐射系统的数值示例说明了该方法的效率。 (c)2018年elestvier有限公司保留所有权利。

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