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Stations-oriented indoor localization (SOIL): A BIM-Based occupancy schedule modeling system

机译:面向站室内定位(土壤):基于BIM的占用时间表建模系统

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This research presents a new occupancy schedule modeling system in a building information modeling (BIM) environment called stations-oriented indoor localization (SOIL). Occupant monitoring, data collection, and analysis are the main challenges when estimating occupancy patterns, especially in large-scale buildings. SOIL utilizes existing network infrastructure (Wi-Fi) and a clustering method to collect and sort occupancy data. These clusters are then mapped onto a BIM model to generate room-level occupancy schedules. In this research, the SOIL system was tested for 10 weekdays on 26 subjects and two operation scenarios in an educational building that included three office spaces and one open studio space. The results show that the SOIL system was able to detect indoor occupants' room-level locations with a 93% level of accuracy, and efficiently generate occupancy schedules in a BIM environment. The main contribution of this SOIL system is the development of a BIMintegrated occupant localization system using existing network infrastructure, a process that has great potential to save energy and assist in the efficient management of a building's renovation, construction, and operation.
机译:该研究提出了一种新的占用时间表建模系统,其建筑信息建模(BIM)环境称为面向站的室内定位(土壤)。乘员监测,数据收集和分析是估算占用模式时的主要挑战,特别是在大型建筑物中。土壤利用现有的网络基础设施(Wi-Fi)和聚类方法来收集和排序占用数据。然后将这些集群映射到BIM模型上以生成房间级占用时间表。在这项研究中,土壤系统在26个科目和两个经营方案中测试了10个工作日,在一个教育建筑中包括三个办公空间和一个公开的工作室空间。结果表明,土壤系统能够检测室内居住者的房间位位置,精度为93%,并有效地在BIM环境中产生占用时间表。这种土壤系统的主要贡献是利用现有网络基础设施开发一个生物共同占用者定位系统,这一过程具有节省能源的巨大潜力,有助于建筑物的装修,建设和运营的有效管理。

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