信息物理系统耦合模型中的不确定性

Maribel Acosta, Sebastian Hahner, A. Koziolek, Thomas Kühn, R. Mirandola, R. Reussner
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引用次数: 2

摘要

网络物理系统的开发通常涉及捕获系统的不同方面及其运行环境的多个耦合模型之间的关联。由于环境的动态性,意外条件和不确定性可能会影响系统。在这项工作中,我们解决了这个问题,并提出了一种分类法来表征耦合模型中的不确定性。我们的分类法扩展了现有的建议,以处理网络物理系统中耦合模型的特殊性。此外,我们的分类法讨论了不确定性传播到系统其他部分的概念。这允许研究和(在某些情况下)量化不确定性对系统中其他模型的影响,甚至在设计时也是如此。我们展示了不确定性分类法在实际用例中的适用性,这些用例是由我们设想的汽车开发场景所驱动的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uncertainty in coupled models of cyber-physical systems
The development of cyber-physical systems typically involves the association between multiple coupled models that capture different aspects of the system and the environment where it operates. Due to the dynamic aspect of the environment, unexpected conditions and uncertainty may impact the system. In this work, we tackle this problem and propose a taxonomy for characterizing uncertainty in coupled models. Our taxonomy extends existing proposals to cope with the particularities of coupled models in cyber-physical systems. In addition, our taxonomy discusses the notion of uncertainty propagation to other parts of the system. This allows for studying and (in some cases) quantifying the effects of uncertainty on other models in a system even at design time. We show the applicability of our uncertainty taxonomy in real use cases motivated by our envisioned scenario of automotive development.
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