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Actuator fault diagnosis for a class of nonlinear systems and its application to a laboratory 3D crane

机译:一类非线性系统的执行器故障诊断及其在实验室3D起重机中的应用

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摘要

In this paper, an actuator fault diagnosis scheme is proposed for a class of affine nonlinear systems with both known and unknown inputs. The scheme is based on a novel input/output relation derived from the considered nonlinear systems and the use of the recently developed high-order sliding-mode robust differentiators. The main advantages of the proposed approach are that it does not require a design of nonlinear observer and applies to systems not necessarily detectable. Conditions are provided to characterize the feasibility of fault detection and isolation using the proposed scheme and the maximum number of isolatable actuator faults. The efficacy of the proposed actuator fault diagnosis approach is tested through experiments on a laboratory 3D Crane, and the experimental results show that the proposed actuator fault diagnosis approach is promising and can achieve fault detection and isolation satisfactorily.
机译:本文针对具有已知和未知输入的一类仿射非线性系统,提出了一种执行器故障诊断方案。该方案基于一种新的输入/输出关系,该输入/输出关系源自所考虑的非线性系统以及最近开发的高阶滑模鲁棒微分器的使用。所提出的方法的主要优点是它不需要设计非线性观测器,并且适用于不一定可检测的系统。使用提出的方案以及可隔离的执行器故障的最大数量,提供了条件来表征故障检测和隔离的可行性。通过在实验室3D起重机上进行的实验对提出的执行器故障诊断方法的有效性进行了测试,实验结果表明,提出的执行器故障诊断方法很有希望,并且可以令人满意地实现故障检测和隔离。

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