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Efficient simulation of hybrid systems: A hybrid bond graph approach

机译:混合系统的高效仿真:混合键图方法

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Accurate and efficient simulations facilitate cost-effective design and analysis of large, complex, embedded systems, whose behaviors are typically hybrid, i.e. continuous behaviors interspersed with discrete mode changes. In this paper we present an approach for deriving component-based computational models of hybrid systems using hybrid bond graphs (HBGs), a multi-domain, energy-based modeling language that provides a compact framework for modeling hybrid physical systems. Our approach exploits the causality information inherent in HBGs to derive component-based computational models of hybrid systems as reconfigurable block diagrams. Typically, only small parts of the computational structure of a hybrid system change when mode changes occur. Our key idea is to identify the bonds and elements of HBGs whose causal assignments are invariant across system modes, and use this information to derive space-efficient reconfigurable block diagram models that may be reconfigured efficiently when mode changes occur. This reconfiguration is based on the incremental reassignment of causality implemented as the Hybrid Sequential Causal Assignment Procedure, which reassigns causality for the new mode based on the causal assignment of the previous mode. The reconfigurable block diagrams are general, and they can be transformed into simulation models for generating system behavior. Our modeling and simulation methodology, implemented as the Modeling and Transformation of HBGs for Simulation (MoTHS) tool suite, includes a component-based HBG modeling paradigm and a set of model translators for translating the HBG models into executable models. In this work, we use MoTHS to build a high-fidelity MATLAB Simulink model of an electrical power distribution system.
机译:准确而有效的仿真有助于对大型,复杂的嵌入式系统进行经济高效的设计和分析,这些系统的行为通常是混合的,即连续的行为散布着离散的模式变化。在本文中,我们提出了一种使用混合键图(HBG)推导混合系统的基于组件的计算模型的方法,混合键图是一种多域,基于能量的建模语言,为混合物理系统的建模提供了一个紧凑的框架。我们的方法利用HBG中固有的因果关系信息来导出混合系统的基于组件的计算模型,作为可重新配置的框图。通常,当模式发生变化时,混合系统的计算结构中只有一小部分会发生变化。我们的关键思想是确定因果关系在系统模式之间不变的HBG的键和元素,并使用此信息来推导节省空间的可重配置框图模型,当发生模式更改时可以有效地对其进行重配置。此重新配置基于实现为混合顺序因果关系分配过程的因果关系的增量重新分配,该过程基于先前模式的因果关系分配为新模式的因果关系。可重配置框图是通用的,可以将它们转换为仿真模型以生成系统行为。我们的建模和仿真方法论被实现为“用于仿真的HBG建模和转换(MoTHS)”工具套件,其中包括基于组件的HBG建模范例以及用于将HBG模型转换为可执行模型的一组模型转换器。在这项工作中,我们使用MoTHS来构建配电系统的高保真MATLAB Simulink模型。

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