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Model-based quality assurance in railway infrastructure planning

机译:铁路基础设施规划中基于模型的质量保证

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A primary motive for adopting the methodology Building Information Modeling (BIM) in planning processes is to Improve planning accuracy, cost security, and in turn quality. Up to now, however, a generally applicable, standardized means of validating design quality has been lacking. To address this shortcoming, this article presents 14 quality parameters in the domains of clash detection, semantics as well as quantities and costs, that apply to the field of infrastructure planning. The sets of rules outlined in the article are adaptable and extendable in order to respond flexibly to different model structures.The investigation focuses on how important and recurring tests can be carried out automatically and how to make the results analyzable in a transparent and standardized manner. The proposed concept thoroughly extends well-known methods such as attribute testing and clash detection analysis of the 3D model. Doing so, the paper presents a set of novel methods for quality assurance, including 4D clash detection and checks for semantic-geometric coherence. The paper discusses in detail: the influence of modeling errors on clash detection, the difference of 3D and 4D clashes, formal methods for checking the correct linkage between 3D BIM and the bill of quantities, formal approaches for checking the semantic-geometric coherence of BIM objects.The quality assurance concept presented in the article concludes with a standardized evaluation for the individual quality criteria using a school grading system, traffic light, and percentage scale. Finally, the concept is applied in a comprehensive case study on a large-scale infrastructure project and the results of the formal quality assessment are presented.
机译:在规划过程中采用建筑信息模型(BIM)方法的主要动机是提高规划准确性,成本安全性以及质量。然而,到目前为止,还缺乏验证设计质量的普遍适用的标准化方法。为了解决此缺陷,本文介绍了在冲突检测,语义以及数量和成本方面的14个质量参数,这些参数适用于基础结构规划领域。本文概述的规则集可以适应和扩展,以灵活地响应不同的模型结构。研究重点在于如何自动执行重要且重复的测试以及如何以透明和标准化的方式对结果进行分析。提出的概念彻底扩展了众所周知的方法,例如3D模型的属性测试和碰撞检测分析。为此,本文提出了一套新颖的质量保证方法,包括4D冲突检测和语义几何一致性检查。本文详细讨论:建模错误对冲突检测的影响,3D和4D冲突的区别,检查3D BIM和工程清单之间正确链接的正式方法,检查BIM语义几何一致性的正式方法本文中提出的质量保证概念以使用学校评分系统,交通信号灯和百分比表对单个质量标准进行标准化评估作为结束。最后,将该概念应用于大型基础设施项目的综合案例研究中,并给出了正式质量评估的结果。

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