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A meta-model approach for formal specification and consistent management of multi-LOD building models

机译:用于多LOD建筑物模型的正式规范和一致管理的元模型方法

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The design of a building is a collaborative process among experts from multiple disciplines. Using Building Information Modeling (BIM), a model is developed through multiple refinement stages to satisfy various design and engineering requirements. Such refinements of geometric and semantic information are described as levels of development (LOD). Thus far, there is no method to explicitly define an LOD's requirements nor to precisely specify the uncertainties involved. Furthermore, despite the insufficient information in the early design stages, a BIM model appears precise and certain, which can lead to false assumptions and model evaluations, for example, in the case of energy efficiency calculations or structural analyses. Hence, this paper presents a multi-LOD meta model to explicitly describe an LOD's requirements, incorporating the potential fuzziness of both, geometric and semantic information of individual elements. The explicitly defined fuzziness can be taken into account when applying simulations or analyses for assessing the performance of different building design variants. To support the continuous elaboration of a building from the conceptual to the detailed design stages, the multi-LOD model makes it possible to ensure the consistency of the geometric and semantic information as well as the topological coherence across the different LODs. The feasibility of the approach is demonstrated by its prototypical implementation as a web-server and user-interface, providing a means for managing and checking the exchange requirements both at the meta-level and for concrete building model instances. The paper is concluded with a case study of a real-world construction project that demonstrates the use of the meta-model to support model analysis and the decision-making process.
机译:建筑物的设计是多学科专家之间的协作过程。使用建筑信息模型(BIM),可以通过多个优化阶段来开发模型,以满足各种设计和工程要求。几何和语义信息的这种改进被描述为发展水平(LOD)。迄今为止,还没有方法明确定义LOD的要求,也没有精确指定涉及的不确定性的方法。此外,尽管在设计初期就没有足够的信息,但BIM模型显得精确而确定,这可能导致错误的假设和模型评估,例如在能效计算或结构分析中。因此,本文提出了一个多LOD元模型来明确描述LOD的要求,并结合了单个元素的几何信息和语义信息的潜在模糊性。在应用模拟或分析评估不同建筑设计变体的性能时,可以考虑明确定义的模糊性。为了支持从概念设计阶段到详细设计阶段的建筑物的不断细化,多LOD模型使得可以确保几何和语义信息的一致性以及不同LOD之间的拓扑一致性。此方法的可行性通过其作为网络服务器和用户界面的原型实现得以证明,它提供了一种在元级别和具体建筑模型实例中管理和检查交换需求的方法。本文以一个现实世界的建设项目为例进行了总结,该项目演示了使用元模型来支持模型分析和决策过程。

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