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Using robust concept exploration and systems dynamics models in the design of complex industrial ecosystems

机译:在复杂的工业生态系统设计中使用强大的概念探索和系统动力学模型

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In studying complex systems such as an organization, a system of industries, or a natural ecosystem, models are developed to enhance the amount and quality of information that a decision-maker can obtain. Due to the complexity of such systems, the simulation models include approximations of the real world. In this paper, system dynamics is used to model the flow and accumulation of matter, information, and energy in a system of industries in Kalundborg, Denmark. This model is utilized in the analysis and improvement of the Kalundborg system with a response surface-based concept exploration process in which the degree of approximation present in the simulation model is acknowledged and handled. Instead of directly using response surfaces to make decisions, the information embodied in the response surfaces is used to locate promising regions of the design space, which are then searched with the simulation model. This response surface based concept exploration process is unique in that: 250L?the final recommendations are based on the simulation model, not on an approximation of the simulation model, and · by relying on the simulation model, instead of solely relying on response surfaces, design knowledge is increased without sacrificing design freedom. In this paper, the overall approach, the method, and its validation, as opposed to results particular to the ease study, are of primary importance.
机译:在研究复杂的系统(例如组织,行业系统或自然生态系统)时,需要开发模型以增强决策者可以获得的信息量和质量。由于此类系统的复杂性,模拟模型包括现实世界的近似值。在本文中,系统动力学用于对丹麦卡伦堡的工业系统中物质,信息和能量的流动和累积进行建模。通过基于响应面的概念探索过程,该模型被用于Kalundborg系统的分析和改进,在该过程中,模拟模型中存在的近似程度得到了认可和处理。代替直接使用响应表面进行决策,而是使用响应表面中包含的信息来定位设计空间中有希望的区域,然后使用仿真模型对其进行搜索。这种基于响应面的概念探索过程的独特之处在于:250L?最终建议基于仿真模型,而不是基于仿真模型的近似,并且·通过依赖仿真模型,而不是仅依赖于响应面,在不牺牲设计自由度的情况下增加了设计知识。在本文中,与简便研究的特定结果相反,总体方法,方法及其验证至关重要。

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