论文标题
用于电气驱动器的数字双胞胎的工业实施的层次建模
Hierarchical modeling for an industrial implementation of a Digital Twin for electrical drives
论文作者
论文摘要
通过模拟和传感器数据,通过其完整的生命周期来监视和优化工艺或机器的能力,数字双胞胎的能力已变得很受欢迎。在本文中,我们将重点介绍在电机上对数字双胞胎进行准确和实时模拟的挑战。为了构建这样的数字双胞胎,不仅涉及电磁方面的计算模型,而且还需要考虑机械和热效应。我们解决了可以使用的数学工具,可以根据物理定律以及替代或数据驱动模型进行所需的模拟。这些工具之一是非常精细至非常粗糙的模型的模型层次结构,也是减少用于获得实时模拟的订单模型。还讨论了在数字双胞胎中进行模拟的所需软件工具。模拟模型是在管道中实现的,该管道允许自动建模新机器和新数字双胞胎的自动配置。最后,在物理演示器中测试并实施了整体实施的数字双胞胎。
Digital twins have become popular for their ability to monitor and optimize a process or a machine, ideally through its complete life cycle using simulations and sensor data. In this paper, we focus on the challenge of accurate and real-time simulations for digital twins in the context of electrical machines. To build such a digital twin involves not only computational models for the electromagnetic aspects, but also mechanical and thermal effects need to be taken into account. We address mathematical tools that can be employed to carry out the required simulations based on physical laws as well as surrogate or data-driven models. One of those tools is a model hierarchy of very fine to very coarse models as well as reduced order models for obtaining real-time simulations. The required software tools to carry out simulations in the digital twin are also discussed. The simulation models are implemented in a pipeline that allows for the automatic modeling of new machines and the automatic configuration of new digital twins. Finally, the overall implemented digital twin is tested and implemented in a physical demonstrator.