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Computation of flow diagrams of an acausal physical model and its application to hybrid power generation system design

机译:因果物理模型流程图的计算及其在混合发电系统设计中的应用

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In the design process of complex engineered systems, design alternatives should be generated and verified systematically while realizing fast product development through the adaptation of the concepts of modular design and model-based design. Automation of the design process, or its synthesis process in particular, is crucial in increasing the productivity of the design process. Computational design synthesis (CDS) is a crucial technology for such automation, but CDS studied to date is not capable of generating design alternatives as combinations of various components, and of verifying their behavior considering physical phenomena in various domains. On the assumption that system modeling and simulation techniques are used in context of modular design and model-based design of complex engineered systems, this study proposes a flow diagram automatically transformed from acausal physical model, which is used in these techniques. The flow diagram shows relations between sub-models in terms of energy-levels described with specific physical domains, and flow direction changes that characterize the system behavior. The paper shows that flow diagrams of a system model at different time intervals support generation of design alternatives considering its behavior characterized by these flows. The study illustrates the usage of the method with design improvement of a hybrid power generation system.
机译:在复杂的工程系统的设计过程中,应通过模块化设计和基于模型的设计概念来实现快速产品开发,同时系统地生成和验证设计备选方案。设计过程的自动化,特别是其综合过程,对于提高设计过程的生产率至关重要。计算设计综合(CDS)是实现此类自动化的关键技术,但迄今为止研究的CDS尚无法生成各种组件组合而成的设计替代方案,并且无法考虑各种领域的物理现象来验证其行为。基于在复杂工程系统的模块化设计和基于模型的设计中使用系统建模和仿真技术的假设,本研究提出了一种从因果物理模型自动转换而来的流程图,并将其用于这些技术中。该流程图根据特定物理域描述的能级显示子模型之间的关系,以及表征系统行为的流向变化。本文表明,考虑到这些流所表征的行为,系统模型在不同时间间隔的流程图可支持设计替代方案的生成。该研究说明了该方法在混合动力发电系统设计改进中的用法。

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