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Fault diagnosis based on continuous simulation models

机译:基于连续仿真模型的故障诊断

摘要

The results are described of an investigation of techniques for using continuous simulation models as basis for reasoning about physical systems, with emphasis on the diagnosis of system faults. It is assumed that a continuous simulation model of the properly operating system is available. Malfunctions are diagnosed by posing the question: how can we make the model behave like that. The adjustments that must be made to the model to produce the observed behavior usually provide definitive clues to the nature of the malfunction. A novel application of Dijkstra's weakest precondition predicate transformer is used to derive the preconditions for producing the required model behavior. To minimize the size of the search space, an envisionment generator based on interval mathematics was developed. In addition to its intended application, the ability to generate qualitative state spaces automatically from quantitative simulations proved to be a fruitful avenue of investigation in its own right. Implementations of the Dijkstra transform and the envisionment generator are reproduced in the Appendix.
机译:结果描述了对使用连续仿真模型作为物理系统推理基础的技术的研究,重点是系统故障的诊断。假定可以使用正确操作系统的连续仿真模型。故障是通过提出以下问题来诊断的:我们如何使模型表现出来。通常必须对模型进行调整以产生观察到的行为,才能为故障的性质提供明确的线索。 Dijkstra最弱的前提谓词变换器的一种新颖应用被用来推导产生所需模型行为的前提条件。为了最小化搜索空间的大小,开发了一种基于区间数学的设想生成器。除了其预期的应用之外,从定量模拟中自动生成定性状态空间的能力本身被证明是研究的一个富有成果的途径。附录中复制了Dijkstra变换和构想生成器的实现。

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  • 作者

    Feyock Stefan;

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  • 年度 1987
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