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Structural simplification of modular bond-graph models based on junction inactivity

机译:基于结不活动的模块化键合图模型的结构简化

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摘要

The modular modeling paradigm facilitates the efficient building, verification and handling of complex system models by assembling them from general-purpose component models. A drawback of this paradigm, however, is that the assembled system models may have excessively complex structures for certain purposes due to the amount of detail in the component models that has been introduced to promote modularity. For example, a multibody system can be modeled using generic rigid-body models with 6 degrees-of-freedom (DoF) to represent the components of the system, but then constraints have to be added to the model to match the DoF of the system. This work presents a structural simplification technique that can detect such unnecessary complexities in a modular bond-graph system model and eliminate them without compromising accuracy. To this end, the activity concept in the literature is extended to define "inactivity" for junction elements, and simplification is obtained by detecting and eliminating inactive junction elements and by propagating the implications. It is shown by example that this simple idea can result in models that are conceptually and computationally more efficient than the original modular models. The realization-preserving and input-dependent characteristics of this approach are highlighted.
机译:模块化建模范式通过从通用组件模型中组装来简化复杂系统模型的高效构建,验证和处理。但是,这种范例的缺点是,由于为促进模块化而引入的组件模型中的大量细节,因此组装后的系统模型出于某些目的可能具有过于复杂的结构。例如,可以使用具有6个自由度(DoF)的通用刚体模型对多体系统进行建模,以表示系统的组件,但是随后必须向模型中添加约束以匹配系统的DoF。 。这项工作提出了一种结构简化技术,可以检测模块化键合图系统模型中的此类不必要的复杂性,并在不影响准确性的情况下消除它们。为此,将文献中的活性概念扩展为定义连接元素的“非活性”,并通过检测和消除非活性连接元素并传播其含义来简化。通过示例显示,这种简单的想法可以使模型在概念和计算上都比原始模块化模型更有效。强调了该方法的实现保持和依赖输入的特征。

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