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IFC BIM-Based Facility Management Approach to Optimize Data Collection for Corrective Maintenance

机译:IFC基于BIM的设施管理方法,优化数据收集以进行纠正维护

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Facility managers are required to collect high-quality data to achieve corrective maintenance actions. Current facility management (FM) information systems are complex and provide high-quality data. However, they lack interoperability and visualization capabilities. The goal of this study is to improve the quality of data collected that is required for corrective maintenance by utilizing visualization and interoperability capabilities of building information modeling (BIM). To achieve that, an approach that implements industry foundation classes (IFC) BIM to link and present alarms reported by FM systems, such as building energy management systems (BEMS) and building automation systems (BAS), with related data from computerized maintenance management systems (CMMS) was developed and validated on a typical university building. The results showed an efficiency increase in high-quality maintenance data collection. The proposed approach supplements the existing body of knowledge in the FM domain by providing a schema that integrates corrective maintenance data in a three-dimensional (3D) IFC-BIM environment. Moreover, it provides a process to minimize the corrective maintenance lead-time and link equipment failures to the related maintenance information. FM practitioners can use this approach to decrease the lead-time needed corrective maintenance responses and focus their resources on productive maintenance tasks. (C) 2016 American Society of Civil Engineers.
机译:设施管理人员需要收集高质量数据以实现纠正维护行动。当前设施管理(FM)信息系统很复杂,提供高质量的数据。但是,它们缺乏互操作性和可视化能力。本研究的目标是通过利用建筑信息建模(BIM)的可视化和互操作性能力来提高纠正维护所需的数据所需的数据质量。为实现这一目标,实现行业基础类(IFC)BIM的方法,以通过计算机维护管理系统(例如,构建能源管理系统(BEMS)和构建自动化系统(BAS),其中包括来自计算机化维护管理系统的相关数据(CMMS)在典型的大学大楼上开发并验证。结果显示了高质量维护数据收集的效率。该方法通过提供一个架构在FM领域中提供了一个集成了三维(3D)IFC-BIM环境中的校正维护数据的模式来补充FM领域的现有知识体。此外,它提供了最小化纠正性维护的过程和链接设备故障,以使相关维护信息最小化。 FM从业者可以使用这种方法来减少需要的纠正维护响应并将其资源集中在生产维护任务上。 (c)2016年美国土木工程师协会。

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