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A Note on Simultaneous Isolation of Sensor and Actuator Faults

机译:同时隔离传感器和执行器故障的注意事项

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摘要

Sensor and actuator self-validation is a critical step in system control and fault diagnostics. If sensors do not work properly, one cannot rely on their outputs to further deduce system status. Similarly, faulty actuators will not satisfy system performance objectives and may cause disasters in feedback control systems. In this paper, a novel method to generate structured residuals for isolating sensor and actuator failures with the least sensitivity to model-plant-mismatch (MPM) and disturbances in multivariate dynamic systems is proposed. The proposed method includes two components. The first component is the generation of the primary residuals directly from noisy input and output measurements without identifying explicitly the model of a system under consideration. The primary residuals are generated such that they have the least sensitivity to any MPM and process disturbances, but have the highest sensitivity to faults in any sensors and/or actuators. The second component of the proposed scheme is the max-min design to transform the primary residuals into a set of structured residuals for fault isolation by improving the existing structured residual approach with maximized sensitivity (SHAMS) [18]. Since one structured residual is made immune to a specified subset of faults, but very sensitive to other faults, any faulty sensors and/or actuators can be isolated by observing the structured residuals in accordance with a predetermined isolation logic. The proposed method has been verified for detection and isolation of faulty sensors and/or actuators in an experimental pilot plant.
机译:传感器和执行器的自我验证是系统控制和故障诊断中的关键步骤。如果传感器无法正常工作,则无法依靠其输出来进一步推断系统状态。同样,有故障的执行器将无法满足系统性能目标,并可能导致反馈控制系统发生灾难。本文提出了一种新的方法来生成结构化残差,用于隔离传感器和执行器故障,对模型-工厂不匹配(MPM)和多元动态系统中的干扰的敏感性最低。所提出的方法包括两个部分。第一个组成部分是直接从嘈杂的输入和输出测量结果中生成主要残差,而无需明确识别所考虑系统的模型。产生的主要残差使得它们对任何MPM和过程干扰的灵敏度最低,但对任何传感器和/或执行器中的故障的灵敏度最高。拟议方案的第二个组成部分是最大-最小设计,它通过改进现有的具有最大灵敏度的结构化残差方法(SHAMS)将主要残差转换为一组结构化残差以进行故障隔离[18]。由于使一个结构化残差不受特定故障子集的影响,但对其他故障非常敏感,因此可以通过根据预定的隔离逻辑观察结构化残差来隔离任何故障传感器和/或执行器。所提出的方法已经过验证,可以在试验性试验工厂中检测和隔离故障传感器和/或执行器。

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