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Monitoring of complex systems of interacting dynamic systems

机译:监视相互作用的动态系统的复杂系统

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摘要

Increases in functionality, power and intelligence of modern engineered systems led to complex systems with a large number of interconnected dynamic subsystems. In such machines, faults in one subsystem can cascade and affect the behavior of numerous other subsystems. This complicates the traditional fault monitoring procedures because of the need to train models of the faults that the monitoring system needs to detect and recognize. Unavoidable design defects, quality variations and different usage patterns make it infeasible to foresee all possible faults, resulting in limited diagnostic coverage that can only deal with previously anticipated and modeled failures. This leads to missed detections and costly blind swapping of acceptable components because of one's inability to accurately isolate the source of previously unseen anomalies. To circumvent these difficulties, a new paradigm for diagnostic systems is proposed and discussed in this paper. Its feasibility is demonstrated through application examples in automotive engine diagnostics.
机译:现代工程系统的功能,功能和智能的增强导致具有大量互连动态子系统的复杂系统。在这样的机器中,一个子系统中的故障可能会级联并影响许多其他子系统的行为。由于需要训练监视系统需要检测和识别的故障模型,因此使传统的故障监视过程变得复杂。不可避免的设计缺陷,质量变化和不同的使用模式使得无法预见所有可能的故障,从而导致诊断范围有限,只能处理先前预期和建模的故障。由于无法准确地隔离以前未见的异常原因,这会导致漏检和可接受组件的盲目更换。为了克服这些困难,本文提出并讨论了一种新的诊断系统范例。通过汽车发动机诊断中的应用实例证明了其可行性。

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