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Modulating Function Based Fault Diagnosis Using the Parity Space Method

机译:使用奇偶校验空间方法调制基于功能的故障诊断

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A model-based method for the detection and estimation of faults in dynamic systems is proposed. The method is based on the combination of the parity space approach and the modulating function framework for estimation. The parity space method is employed as an efficient geometric procedure determining null subspaces for annihilating unknown terms and formulating residuals. With the modulating functions technique the dynamic relation from output differentiation is reformulated as an algebraic expression. This substantially reduces the noise sensitivity of the output derivatives required. The design allows for the robust fault detection and isolation also for some nonlinear systems. The robustness of the approach is demonstrated on a nonlinear model of a four-tank process.
机译:提出了一种用于检测和估计动态系统故障的模型方法。 该方法基于奇偶校验空间方法和调制函数框架的组合来估计。 奇偶校验空间方法用作确定无数个子空间的有效几何过程,用于湮灭未知术语和配制残差。 利用调制功能技术,来自输出分化的动态关系被重新重新重整为代数表达。 这基本上降低了所需衍生物的噪声灵敏度。 该设计允许对某些非线性系统的强大故障检测和隔离。 在四罐过程的非线性模型上证明了该方法的稳健性。

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