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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 土木工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/81337
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor林之謙(Jacob J. Lin)
dc.contributor.authorDuong Duy Hungen
dc.contributor.author楊維興zh_TW
dc.date.accessioned2022-11-24T03:44:01Z-
dc.date.available2021-08-06
dc.date.available2022-11-24T03:44:01Z-
dc.date.copyright2021-08-06
dc.date.issued2021
dc.date.submitted2021-07-22
dc.identifier.citation[1] Z. A. Akasah, R. Amirudin, and M. Alias. Maintenance management process model for school buildings: An application of idef 0 modelling methodology. Australian Journal of Civil Engineering, 8(1):1–12, 2010. [2] K. Araszkiewicz. Digital Technologies in Facility Management ­ The state of Practice and Research Challenges. Procedia Engineering, 196(June):1034–1042, 2017. [3] S. Ashworth, M. Tucker, and C. Druhmann. The role of fm in preparing a bim strategy and employes information requirements (eir) to align with client asset management strategy. In 15th EuroFM Research Symposium, Milan, Italy, pages 218–228, 2016. [4] B. Becerik­Gerber, F. Jazizadeh, N. Li, and G. Calis. Application Areas and Data Requirements for BIM­Enabled Facilities Management. Journal of Construction Engineering and Management, 138(3):431–442, 2012. [5] B. Becerik­Gerber, F. Jazizadeh, N. Li, and G. Calis. Application areas and data requirements for bim­enabled facilities management. Journal of Construction Engineering and Management, 138(3):431–442, 2012. [6] R. Becker, V. Falk, S. Hoenen, S. Loges, S. Stumm, J. Blankenbach, S. Brell­Cokcan, L. Hildebrandt, and D. Vallée. Bim – towards the entire lifecycle. International Journal of Sustainable Development and Planning, 13(1):84–95, 2018. [7] BSI. Facility management. Terms and definitions. BSI Standards Publication, 2006. [8] BSI. Pas 1192­3:2014 specification for information management for the operational phase of assets using building information modelling. BSI Standards Publication, 2014. [9] K. Chen, W. S. Lu, F. Xue, L. Z. Zheng, and D. D. Liu. Smart gateway for bridging bim and building. In K. W. Chau, I. Y. Chan, W. Lu, and C. Webster, editors, Proceedings of the 21st International Symposium on Advancement of Construction Management and Real Estate, pages 1307–1316, Singapore, 2018. Springer Singapore. [10] C. Coenen, K. Alexander, and H. Kok. Facility management value dimensions from a demand perspective. Journal of Facilities Management, 11(4):339–353, 2013. [11] K. El Ammari and A. Hammad. Remote interactive collaboration in facilities management using BIM­based mixed reality. Automation in Construction, 107(January):102940, 2019. [12] L. Floridi. Semantic Conceptions of Information. In E. N. Zalta, editor, The Stanford Encyclopedia of Philosophy. Metaphysics Research Lab, Stanford University, Winter 2019 edition, 2019. [13] D. Gatziolis and H. E. Andersen. A guide to LIDAR data acquisition and processing for the forests of the pacific northwest. USDA Forest Service ­ General Technical Report PNW­GTR, pages 1–32, 2008. [14] M. Golparvar­Fard, J. S. Bohn, J. Teizer, S. Savarese, and F. Peña­Mora. Evaluation of image­based modeling and laser scanning accuracy for emerging automated performance monitoring techniques. Automation in Construction, 20:1143–1155, 2011. [15] J. Heaton, A. K. Parlikad, and J. Schooling. A building information modelling approach to the alignment of organisational objectives to asset information requirements. Automation in Construction, 104:14–26, 2019. [16] HM Government. Final report to government by the procurement/lean client task group. Technical report, Government Construction Strategy, London, 2012. [17] N. institute of building sciences buildingSMART alliance. National BIM Standard ­ United States ­ Construction operation building information exchange (COBie)– Version 3. Standard, National institute of building sciences buildingSMART alliance, United State, 2015. [18] Facility management – vocabulary. Standard, International Organization for Standardization, 2017. [19] P. Karanja and G. Mayo. State of Practice for Facility Condition Assessment. International Facility Management Association, 2016. [20] J. Korpela, R. Miettinen, T. Salmikivi, and J. Ihalainen. The challenges and potentials of utilizing building information modelling in facility management: the case of the center for properties and facilities of the university of helsinki. Construction Management and Economics, 33(1):3–17, 2015. [21] R. Mobley and W. W. Cato. Computer­Managed Maintenance Systems: A Step­by­Step Guide to Effective Management of Maintenance, Labor, and Inventory. Butterworth­Heinemann; 2nd edition, 2001. [22] G. Nardelli and A. Scupola. Tools for Stakeholder Involvement in Facility Management Service Design. CIB Facilities Management Conference 2014, 1(1):16–25, 2014. [23] B. Naticchia, A. Corneli, and A. Carbonari. Framework based on building information modeling, mixed reality, and a cloud platform to support information flow in facility management. Frontiers of Engineering Management, 7(1):131–141, 2020. [24] R. S. Nizam, C. Zhang, and L. Tian. A bim based tool for assessing embodied energy for buildings. Energy and Buildings, 170:1–14, 2018. [25] E. A. Pärn, D. J. Edwards, and M. C. Sing. The building information modelling trajectory in facilities management: A review. Automation in Construction, 75:45– 55, 2017. [26] J. Patacas, N. Dawood, and M. Kassem. BIM for facilities management: A framework and a common data environment using open standards. Automation in Construction, 120(April):103366, 2020. [27] K. A. Piirainen, G. L. Kolfschoten, and S. Lukosch. The Joint Struggle Of Complex Engineering: A Study Of The Challenges Of Collaborative Design. International Journal of Information Technology Decision Making (IJITDM), 11(06):1087– 1125, 2012. [28] Project Management Institute. A guide to the project management body of knowledge (PMBOK guide). Project Management Institute, 2017. [29] M. Schley. Bim for facility management managing for the building life cycle.” fm: Systems. http://www.fmsystems.com/, 2012. [30] H. Shin, H.­S. Lee, M. Park, and J. G. Lee. Facility management process of an office building. Journal of Infrastructure Systems, 24(3):04018017, 2018. [31] W. Solihin and C. Eastman. Classification of rules for automated bim rule checking development. Automation in Construction, 53:69–82, 2015 [32] C. Sun, S. Jiang, M. J. Skibniewski, Q. Man, and L. Shen. A literature review of the factors limiting the application of bim in the construction industry. Technological and Economic Development of Economy, 23(5):764–779, 2017. [33] P. Teicholz. Bim for facility managers. In BIM for Facility Managers, pages 15– 18, New Jersey, 2013. The Association for Computer Aided Architectural Design Research in Asia (CAADRIA). [34] J. Underwood and U. Isikdag. Emerging technologies for bim 2.0. Construction Innovation, 11:252 258, 2011. [35] R. Volk, J. Stengel, and F. Schultmann. Building information modeling (bim) for existing buildings literature review and future needs. Automation in Construction, 38:109–127, 2014. [36] Q. Wang and M. K. Kim. Applications of 3d point cloud data in the construction industry: A fifteen­year review from 2004 to 2018. Advanced Engineering Informatics, 39(June):306–319, 2019. [37] R. Williams, H. Shayesteh, and L. Marjanovic­Halburd. Utilising building information modeling for facility management. In International Journal of Facility Management, 2014. [38] X. Xiong, A. Adan, B. Akinci, and D. Huber. Automatic creation of semantically rich 3d building models from laser scanner data. Automation in Construction, 31:325– 337, 2013. [39] J. Xu, K. Chen, F. Xue, and W. Lu. Proceedings of the 23rd International Symposium on Advancement of Construction Management and Real Estate. Springer Singapore, 2021. [40] F. Xue, W. Lu, and K. Chen. Automatic generation of semantically rich as­built building information models using 2d images: A derivative­free optimization approach. Computer­Aided Civil and Infrastructure Engineering, 33(11):926–942, 2018.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/81337-
dc.description.abstract設施管理 (FM) 是建築物整個生命週期中最長的階段,費用最高。然而,有限的質量圖紙和歷史數據使許多現有建築物的信息流變得更加複雜,並導致 FM 效率低下。本研究提出了一個系統的、綜合的基於現實點雲模型的框架,以視覺數據採集的商品級支持FM過程。具體來說,該框架涵蓋了使用現實模型實施 FM 策略的端到端工作流程,包括生成現實模型的可視化數據捕獲過程;現實模型中用於問題查詢的 FM 信息附件;和用於問題跟踪的信息流。生成的現實模型捕獲關鍵和必要的 FM 數據,並可用作資產信息模型。我們還定義了利益相關者在實施 FM 中的責任,以及如何在由現實模型組成的唯一數據存儲庫中傳輸、更新和生成報告。該框架是通過採訪 FM 專家來評估的。結果表明,實施該框架可以通過使用現實模型提高 FM 過程的效率。zh_TW
dc.description.provenanceMade available in DSpace on 2022-11-24T03:44:01Z (GMT). No. of bitstreams: 1
U0001-1707202106433600.pdf: 9087085 bytes, checksum: fa7436179cf6c3b69d31f6aede47e9c9 (MD5)
Previous issue date: 2021
en
dc.description.tableofcontentsAcknowledgements 2 摘要 3 Abstract 4 Contents 5 List of Figures 8 List of Tables 9 Denotation 10 Chapter 1 Introduction 1 1.1 Background 1 1.2 Research Objectives 4 1.3 Thesis Structure 6 Chapter 2 Literature of Review 7 2.1 Facility Management (FM) 8 2.1.1 Information in FM in existing buildings 8 2.1.2 BIM for FM in existing buildings 10 2.1.3 Stakeholders in FM 13 2.1.4 FM frameworks for existing buildings 14 2.2 Reality Point Cloud Model 15 2.2.1 Point Cloud Object Properties 15 2.2.2 Point Cloud Data Capture 17 2.2.3 Point Cloud Data Application in FM 18 2.3 Gap of Knowledge 19 Chapter 3 Reality model­based Facility Management Framework 20 3.1 Initiating and Planning Process Group 22 3.1.1 A1. Develop Asset Information Requirements (AIR) 22 3.1.2 A2. Develop Asset Information Model (AIM) 25 3.1.3 A3. Develop Facility Management Plan (FMP) 27 3.2 Executing and Controlling Processes 30 3.2.1 A4. Implement Operation and Maintenance 30 3.2.2 A5. Control 31 Chapter 4 Stakeholders Collaboration And Data Flow 34 4.1 Stakeholders collaboration 34 4.2 Data Flow 35 Chapter 5 Implementation And Validation 39 5.1 Implementation 39 5.1.1 Develop point cloud ­ based AIM (A2) 40 5.1.1.1 Collect Point Cloud Data (A21) 40 5.1.1.2 Collect and organized data (A22) 42 5.1.1.3 Integrate Data (A24) 44 5.1.2 Implement Maintenance Work 45 5.2 Validation 49 Chapter 6 Discussion And Conclusion 54 6.1 Discussion 54 6.2 Conclusion 56 References 58 Appendix A — Interview Questions 64 A.1 Personal questions 64 A.2 Basic questions 64 A.3 Appropriateness 65 A.4 Effectiveness 65 A.5 Efficiency 65 A.6 Other comments 65
dc.language.isoen
dc.subject設施管理zh_TW
dc.subject工作流程zh_TW
dc.subject點雲zh_TW
dc.subject現有建築zh_TW
dc.subjectWorkflowen
dc.subjectPoint Clouden
dc.subjectFacility Managementen
dc.subjectExisting buildingen
dc.title以點雲模型為基礎之既有建築設施維護管理系統框架zh_TW
dc.titleReality Model­-based Facility Management Framework for Existing Buildingen
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee謝尚賢(Hsin-Tsai Liu),陳柏翰(Chih-Yang Tseng)
dc.subject.keyword設施管理,工作流程,點雲,現有建築,zh_TW
dc.subject.keywordFacility Management,Workflow,Point Cloud,Existing building,en
dc.relation.page65
dc.identifier.doi10.6342/NTU202101530
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2021-07-22
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept土木工程學研究所zh_TW
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