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Data-based fault detection and isolation using feedback control: Output feedback and optimality

机译:使用反馈控制的基于数据的故障检测和隔离:输出反馈和最优性

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摘要

This work focuses on data-based fault detection and isolation (FDI) of nonlinear process systems. Working within the framework of controller-enhanced FDI that we recently introduced, we address and solve two unresolved, practical problems. First, we consider the case where only output measurements are available and design appropriate state estimator-based output feedback controllers to achieve controller-enhanced FDI in the closed-loop system. Precise conditions for achieving FDI using output feedback control are provided. Second, we address the problem of controller-enhanced FDI in an optimal fashion within the framework of model predictive control (MPC). We propose an MPC formulation that includes appropriate isolability constraints to achieve FDI in the closed-loop system. Throughout the manuscript, we use a nonlinear chemical process example to demonstrate the applicability and effectiveness of the proposed methods.
机译:这项工作的重点是非线性过程系统的基于数据的故障检测和隔离(FDI)。在我们最近引入的控制器增强型FDI的框架内,我们解决并解决了两个尚未解决的实际问题。首先,我们考虑只有输出测量可用的情况,并设计适当的基于状态估计器的输出反馈控制器,以在闭环系统中实现控制器增强的FDI。提供了使用输出反馈控制实现FDI的精确条件。其次,我们在模型预测控制(MPC)框架内以最优方式解决了控制器增强的FDI问题。我们提出了一种MPC公式,其中包括适当的隔离性约束条件,以在闭环系统中实现FDI。在整个手稿中,我们使用一个非线性化学过程示例来证明所提出方法的适用性和有效性。

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