2021
DOI: 10.1016/j.autcon.2021.103814
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Developing a BIM-enabled building lifecycle management system for owners: Architecture and case scenario

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Cited by 34 publications
(14 citation statements)
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“…Compared with the traditional information system technology architecture, based on the flexible architecture technology, the SpringCloud micro-service technology framework [2][3][4][5][6][7][8][9][10][11][12] can quickly reuse the functional modules and build a distributed system by integrating a large number of mature components, and realize the independent, agile and loosely coupled development of the system. It can better improve the adaptability of the platform and effectively meet the business needs of comprehensive traffic planning analysis and data services.…”
Section: Demand Analysismentioning
confidence: 99%
“…Compared with the traditional information system technology architecture, based on the flexible architecture technology, the SpringCloud micro-service technology framework [2][3][4][5][6][7][8][9][10][11][12] can quickly reuse the functional modules and build a distributed system by integrating a large number of mature components, and realize the independent, agile and loosely coupled development of the system. It can better improve the adaptability of the platform and effectively meet the business needs of comprehensive traffic planning analysis and data services.…”
Section: Demand Analysismentioning
confidence: 99%
“…Generally, RFID technology will deliver promising results if implemented in the construction industry (Yin et al, 2009). Not long ago, many pilot surveys verified the technical viability of RFID implementation in construction and established how contractors, clients, material suppliers, and subcontractors facilitate their activities via RFID (Li et al, 2021; Liu et al, 2018). However, it is noteworthy that the line of sight reading is not a requirement for RFID.…”
Section: Research Backgroundmentioning
confidence: 99%
“…Well-established production methods may, however, flatten the BIM implementation (Aram and Eastman, 2013; Dave and Sacks, 2020). Earlier studies suggest that BIM improvements are based on Product Lifecycle Management (PLM) (Aram and Eastman, 2013; Jupp and Nepal, 2014; Li et al. , 2021; Pourzarei et al.…”
Section: Literature Reviewmentioning
confidence: 99%
“…Well-established production methods may, however, flatten the BIM implementation (Aram and Eastman, 2013;Dave and Sacks, 2020). Earlier studies suggest that BIM improvements are based on Product Lifecycle Management (PLM) (Aram and Eastman, 2013;Jupp and Nepal, 2014;Li et al, 2021;Pourzarei et al, 2020); the adoption of Industry Foundation Classes (IFC) as the data model standard for delivering integrated building information (Dimyadi et al, 2016;Fu et al, 2006); the implementation of situationbased management approaches such as Last Planner (Bertelsen, 2005;Maraqa et al, 2021;Sbiti et al, 2021;Schimanski et al, 2020); proposing a central information repository as a multi-disciplinary collaboration platform (Ding and Kohli, 2021;Hamidavi et al, 2020;Ng et al, 2020;Singh et al, 2011), and modularisation through conceptualising buildings as products (Bertelsen, 2005;Sharif et al, 2022). These methods have common goals with BIM, including process fluency, and product data integrity among multiple systems through standardised information repository across building (product) lifecycles.…”
Section: Introductionmentioning
confidence: 99%