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Fault isolation in hybrid systems combining model based diagnosis and signal processing

机译:混合系统中基于模型的诊断和信号处理相结合的故障隔离

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Sensor-rich systems typically employ extensive signal processing techniques for fault detection and isolation tasks. Sensor-poor systems, on the other hand, require system models and analytical redundancy techniques to make diagnostic inferences. The increasing availability of inexpensive, batch-fabricated micro-controllers and MEMS sensors enables deployment of a multitude of sensors and microprocessors for control and diagnosis of embedded systems. We develop a diagnosis method that combines model-based diagnosis with signal processing techniques to address the challenges in diagnosing complex systems with hybrid discrete/continuous behaviors and to reduce the computational requirements by focusing the signal processing algorithms. We demonstrate the approach on problems in reprographic copier paper path diagnosis.
机译:传感器丰富的系统通常采用广泛的信号处理技术来执行故障检测和隔离任务。另一方面,传感器匮乏的系统需要系统模型和分析冗余技术来做出诊断推断。廉价,批量制造的微控制器和MEMS传感器的可用性不断提高,使得可以部署大量传感器和微处理器来控制和诊断嵌入式系统。我们开发了一种将基于模型的诊断与信号处理技术相结合的诊断方法,以解决诊断具有离散/连续混合行为的复杂系统的挑战,并通过集中处理信号处理算法来降低计算要求。我们演示了复制影印机纸张路径诊断中的问题的方法。

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