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A qualitative event-based approach to multiple fault diagnosis in continuous systems using structural model decomposition

机译:基于事件的定性基于结构模型分解的连续系统多故障诊断方法

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Multiple fault diagnosis is a difficult problem for dynamic systems, and, as a result, most multiple fault diagnosis approaches are restricted to static systems, and most dynamic system diagnosis approaches make the single fault assumption. Within the framework of consistency-based diagnosis, the challenge is to generate conflicts from dynamic signals. For multiple faults, this becomes difficult due to the possibility of fault masking and different relative times of fault occurrence, resulting in many different ways that any given combination of faults can manifest in the observations. In order to address these challenges, we develop a novel multiple fault diagnosis framework for continuous dynamic systems. We construct a qualitative event-based framework, in which discrete qualitative symbols are generated from residual signals. Within this framework, we formulate an online diagnosis approach and establish definitions of multiple fault diagnosability. Residual generators are constructed based on structural model decomposition, which, as we demonstrate, has the effect of reducing the impact of fault masking by decoupling faults from residuals, thus improving diagnosability and fault isolation performance. Through simulation-based multiple fault diagnosis experiments, we demonstrate and validate the concepts developed here, using a multi-tank system as a case study.
机译:多重故障诊断对于动态系统来说是一个难题,因此,多数多重故障诊断方法仅限于静态系统,并且大多数动态系统诊断方法都采用单一故障假设。在基于一致性的诊断框架内,挑战在于从动态信号中产生冲突。对于多个故障,由于存在故障掩盖的可能性和故障发生的相对时间不同,因此变得困难,从而导致许多给定故障组合可以在观测结果中体现出来的多种不同方式。为了解决这些挑战,我们为连续动态系统开发了一种新颖的多故障诊断框架。我们构建了一个基于事件的定性框架,其中从残差信号中生成了离散的定性符号。在此框架内,我们制定了一种在线诊断方法并建立了多个故障可诊断性的定义。残差生成器是基于结构模型分解构造的,正如我们所展示的,通过将故障与残差解耦,可以减少故障掩盖的影响,从而提高可诊断性和故障隔离性能。通过基于仿真的多个故障诊断实验,我们使用多储罐系统作为案例研究,论证并验证了此处开发的概念。

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