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Structure-Based System Dynamics Analysis of Engineering Design Processes

机译:工程设计过程的基于结构的系统动力学分析

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The dynamic process behavior of Engineering Design Processes (EDPs) needs to be understood in order to distribute resources appropriately as well as for cost and schedule calculation. Currently, structural and behavioral modeling approaches are used in the context of EDP management. In many use cases, it is essential to have at hand both the static structural view and the dynamic behavioral one. Currently, however, the two modeling approaches cannot be sufficiently combined. Within this work, a framework for the structure-based System Dynamics analysis of EDPs is presented. It uses structural models as a basis for constructing System Dynamics models to simulate the process behavior and thereby supports understanding the correlation of process structure and behavior. This framework was iteratively developed by conducting case studies and consists of three layers, a five-step procedure and special support for the transformation of the models. For the validation, a subset of the design process at a large German commercial vehicle manufacturer has been chosen. Based on the application of the framework during a six-month project at the company, the industrial experts rated the framework as beneficial for the purpose of optimizing EDPs. Furthermore, they stated that the transparent representation of the sequence of the process, influencing factors and control variables in combination with the quantitative data had improved their understanding of the overall process. (C). 2016 Wiley Periodicals, Inc.
机译:需要了解工程设计过程(EDP)的动态过程行为,以便适当地分配资源以及进行成本和进度计算。当前,在EDP管理中使用结构和行为建模方法。在许多用例中,必须同时掌握静态结构视图和动态行为视图。但是,目前,这两种建模方法无法充分结合。在这项工作中,提出了用于EDP的基于结构的系统动力学分析的框架。它使用结构模型作为构建系统动力学模型以模拟过程行为的基础,从而支持理解过程结构和行为的相关性。该框架是通过进行案例研究而反复开发的,包括三层,五步过程以及对模型转换的特殊支持。为了进行验证,选择了一家大型德国商用车制造商的设计过程的一部分。根据该框架在公司的为期六个月的项目中的应用,行业专家认为该框架对于优化EDP而言是有益的。此外,他们表示,过程顺序的透明表示,影响因素和控制变量与定量数据的结合,提高了他们对整个过程的理解。 (C)。 2016 Wiley期刊公司

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