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Integration of Simulation and State Observers for Online Fault Detection of Nonlinear Continuous Systems

机译:仿真与状态观测器的集成,用于非线性连续系统的在线故障检测

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摘要

The development of efficient and reliable fault detection approaches is necessary to improve performance, safety, and reliability in engineering systems. Moreover, these approaches have to be simple enough to provide quick diagnosis results and to reduce development and maintenance costs. Consistency-based diagnosis using possible conflicts (PCs) relies upon the simulation of numerical models to provide a simple and efficient fault diagnosis approach. However, simulation approaches need to know the initial state, and this assumption is not easily fulfilled in real systems, even in the presence of measurements related to state variables due to noise and parameter uncertainties. In this paper, we develop an approach where PCs are used to automatically compute structural models which can be implemented as simulation and state observer models. Using these models, we propose a framework which integrates those state observers to estimate the initial states for simulation within the consistency-based diagnosis framework. Then, both the simulation models and the state observers are used to provide quick detection decisions without increasing the complexity of the diagnoser. Our integration proposal is open to different kinds of state observers, except for the structural model, and different fault detection configurations. The proposal has been tested on a thermohydraulic reconfigurable laboratory plant using real data with satisfactory results.
机译:必须开发有效而可靠的故障检测方法,以提高工程系统的性能,安全性和可靠性。而且,这些方法必须足够简单以提供快速的诊断结果并减少开发和维护成本。使用可能冲突(PC)的基于一致性的诊断依赖于数值模型的仿真,以提供一种简单有效的故障诊断方法。但是,仿真方法需要知道初始状态,即使在存在由于噪声和参数不确定性而与状态变量相关的测量的情况下,在实际系统中也很难轻易实现这一假设。在本文中,我们开发了一种方法,其中PC用于自动计算结构模型,可以将其实现为仿真模型和状态观察器模型。使用这些模型,我们提出了一个框架,该框架整合了这些状态观察器,以估计基于一致性的诊断框架中用于仿真的初始状态。然后,仿真模型和状态观察器都可用于提供快速的检测决策,而不会增加诊断程序的复杂性。除了结构模型和不同的故障检测配置外,我们的集成建议对各种类型的状态观察者开放。该提案已在热工可重构实验室设备上使用真实数据进行了测试,结果令人满意。

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