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A Method to Integrate Virtual-Physical Construction Environment in Framework of CPS Approach

机译:一种在CPS方法框架中集成虚拟物理施工环境的方法

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This paper focuses on the challenge of modelling a cyber-physical approach in construction domain. Current cutting-edge technologies especially in Automated Data Collection (ADC) and Building Information Modelling (BIM) can facilitate the integration of physical construction fields into virtual information models, therefore the entire digitalization of construction processes are possible. However, this need an adequate method that allows bi-directional coordination and integration between the virtual construction models "BIM onsite" and the construction field processes. The proposed solution recognizes two key levels of integration to meet these requirements; (1) linking construction physical objects to their digital product models using RFID, and (2) coupling the physical objects to their temporary location using positioning system on one hand, next these objects have to associate with a predefined construction site layout model based on enrichment site spatial entities. The results are objects at a level of "smartness" with enhanced digital capabilities and ability of context-aware data design, integration and tailoring. Here, a cyber physical framework is introduced to close the information loop and to create bidirectional data flow. Subsequently, it allows a continuous monitoring, updating and control construction processes. Finally, an application scenario is proposed to integrate of the continuous real data "input" for supporting process based simulation method during project construction.
机译:本文重点介绍建设领域在建筑域中的网络物理方法的挑战。当前的尖端技术尤其是自动化数据收集(ADC)和建筑信息建模(BIM)可以促进物理施工字段的集成到虚拟信息模型中,因此施工过程的整个数字化是可能的。然而,这需要一种充分的方法,可以实现虚拟施工模型“BIM现场”和施工现场过程之间的双向协调和集成。拟议的解决方案识别两个关键的整合水平,以满足这些要求; (1)将施工物理对象链接到其数字产品模型使用RFID,(2)一方面使用定位系统将物理对象耦合到其临时位置,下一个这些对象必须与基于富集的预定义的施工站点布局模型相关联站点空间实体。结果是“智能性”的对象,具有增强的数字功能和情境感知数据设计,集成和剪裁能力。这里,引入网络物理框架以关闭信息循环并创建双向数据流。随后,它允许连续监控,更新和控制构造过程。最后,提出了一种应用方案来集成在项目构建过程中基于过程的仿真方法的连续实际数据“输入”。

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