博碩士論文 111453038 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:82 、訪客IP:3.145.97.235
姓名 梁唐鈞(Tang-Chun Liang)  查詢紙本館藏   畢業系所 資訊管理學系在職專班
論文名稱 應用敏捷開發於智慧建築系統之導入流程
(Appling Agile Development Framework to the Implementation Process of Smart Building Systems)
相關論文
★ 專案管理的溝通關鍵路徑探討─以某企業軟體專案為例★ 運用並探討會議流如何促進敏捷發展過程中團隊溝通與文件化:以T銀行系統開發為例
★ 專案化資訊服務中人力連續派遣決策模式之研究─以高鐵行控資訊設備維護為例★ 以組織正義觀點介入案件指派決策之研究
★ 應用協調理論建立系統軟體測試中問題改善之協作流程★ 應用案例式推理於問題管理系統之研究 -以筆記型電腦產品為例
★ 運用限制理論於多專案開發模式的人力資源配置之探討★ 應用會議流方法於軟體專案開發之個案研究:以翰昇科技公司為例
★ 多重專案、多期再規劃的軟體開發接案決策模式:以南亞科技資訊部門為例★ 會議導向敏捷軟體開發及系統設計:以大學畢業專題為例
★ 一種基於物件、屬性導向之變更影響分析方法於差異化產品設計★ 會議流方法對大學畢業專題的團隊合作品質影響之實驗研究
★ 實施敏捷式發展法於大學部畢業專題之 行動研究 – 以中央大學資管系為例★ 建立一個用來評核自然語言需求品質的線上資訊系統
★ 結合本體論與模糊分析網路程序法於軟體測試之風險與風險關聯辨識★ 在軟體反向工程中針對UML結構模型圖之線上品質評核系統
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   至系統瀏覽論文 (2029-6-21以後開放)
摘要(中) 隨著國際社會對於氣候變化和人口老齡化問題的日增關注,智慧建築成為了前沿話題,此類建築系統融合了5G、AIoT、環境監測以及能源管理等創新技術,目的是創造一個既安全又健康、節能且便利舒適的居住環境,滿足人們將日常需求與智能技術結合的願望。然而,此類工程專案涉及多方合作、管理複雜,傳統的營建管理方法難以應對在溝通和系統驗收階段出現的認知差異,這些問題不僅影響工程進度,還可能降低業主滿意度,導致專案無法順利完成。
敏捷開發已改變軟體業界的交付模式,透過敏捷式管理方法,在過程中不斷產出、溝通、提升服務設計,根據使用者反饋持續優化軟體服務。本研究期望透過敏捷式管理方法改變傳統智慧建築系統專案管理方式,提升專案執行效率且發揮智慧應用最大效益。因此,本研究將以個案研究方法研究個案公司之智慧建築系統導入案例,了解其實際運用敏捷方法的經驗,再以專家訪談方式綜觀瞭解本次研究結果,並歸納建立一套「敏捷式智慧建築系統導入管理流程」。透過本研究過程,個案公司得以有效改善其專案執行問題,逐漸演變成具備敏捷精神的管理組織,此外,本研究成果可作為營建業智慧應用建置單位的參考實踐案例,協助其順利導入敏捷式管理流程。
摘要(英) As concerns about climate change and an aging global population mount, smart buildings are becoming increasingly important. These buildings leverage advanced technologies to create safe, healthy, energy-efficient, and comfortable environments that meet the growing demand for smart living solutions. However, developing such projects requires collaboration and sophisticated management strategies. Traditional construction management often fails to bridge communication gaps and reconcile cognitive differences, which can hinder project progress, reduce client satisfaction, and even lead to project failure.
Agile development has transformed the software industry through management methods that emphasize continuous output, enhanced communication, and iterative service design based on user feedback. This research proposes the extension of these agile principles to transform traditional management practices in smart building system projects, aiming to boost efficiency and optimize the benefits of intelligent applications. The study will use a case study methodology and expert interviews to analyze a company′s experiences in implementing smart building systems with agile methods. The results will be used to develop an "Agile Smart Building System Implementation Management Process" framework, enabling the company to tackle project execution challenges and become an agile-responsive organization. Furthermore, the findings will provide valuable insights and serve as a practical guide for other entities in the construction industry, encouraging the adoption of agile practices to fully leverage smart building technologies in a dynamic technological environment.
關鍵字(中) ★ 智慧建築系統
★ 系統導入
★ 敏捷方法
★ Scrum
★ 個案研究
關鍵字(英) ★ Smart Building Systems
★ System Implementation
★ Agile
★ Scrum
★ Case Study
論文目次 摘要 i
Abstract ii
目錄 iii
圖目錄 v
表目錄 vi
第一章 緒論 1
1.1 研究背景 1
1.2 研究動機 1
1.3 研究目的 2
1.4 研究範圍 3
1.5 研究流程 3
第二章 文獻探討 5
2.1 智慧建築 5
2.2 智慧建築系統導入方法 7
2.3 敏捷式開發模式 10
2.4 營建專案敏捷管理 17
第三章 研究方法 21
3.1 個案研究方法 21
3.2 資料蒐集與成效評估 25
第四章 個案分析 27
4.1 個案介紹 27
4.2 個案問題描述 29
4.3 應用敏捷方法於智慧建築系統導入流程 31
第五章 研究討論 43
5.1 關鍵績效指標分析 43
5.2 訪談與分析 45
5.3 研究效度討論 55
5.4 研究限制與未來研究 57
第六章 結論與建議 58
參考文獻 60
參考文獻 1. 內政部建築研究所 (2010)。智慧綠建築推動方案。中華民國內政部。
2. 內政部建築研究所 (2012)。智慧建築設計技術參考規範。內政部建築研究所。
3. 行政院國家永續發展委員會 (2022)。臺灣2050淨零排放路徑及策略總說明。國家發展委員會、行政院環境保護署、經濟部、科技部、交通部、內政部、行政院農業委員會、金融監督管理委員會。
4. 吳繼熊 (2022)。營建專案管理實務。詹氏書局。
5. 王榮進、温琇玲、蕭又仁、李國維、黃健瑋、王獻堂、游璧菁 (2023)。智慧建築解說與評估手冊(草案) 2023年版。內政部建築研究所。
6. 王榮進、温琇玲、蕭又仁、李國維、黃健瑋、王獻堂、游璧菁、劉俊伸 (2024)。智慧建築評估手冊2024年版。內政部建築研究所。
7. 研創智聯股份有限公司 (2024)。公司簡介。https://www.entron.tw/
8. 張岸礕、林志棟 (2010)。專案管理計分卡運用在建築專案執行之研究 [研討會論文]。2010年土木工程與物業管理研討會,中壢市,臺灣。
9. 溫琇玲、紹文政、王瑞益、陳海曙、涂堯威 (1996)。智慧型公寓大廈自動化系統設計準則之研究。內政部建築研究所。
10. 何明錦、溫琇玲、林益全、陳衍霆、黃國書、顏世禮、周鼎全 (2011)。智慧建築解說與評估手冊2011年版。內政部建築研究所。
11. 何明錦、廖慧燕、陳伯勳、林益全、陳衍霆、黃國書、顏世禮、何三帄、周鼎金、廖慧燕、羅時麒 (2016)。智慧建築解說與評估手冊2016年版。內政部建築研究所。
12. Agile Alliance. (2001). Manifesto for Agile Software Development. https://agilemanifesto.org
13. Ahn, Y. H., Pearce, A. R., Wang, Y., & Wang, G. (2013). Drivers and barriers of sustainable design and construction: The perception of green building experience. International Journal of Sustainable Building Technology and Urban Development, 4(1), 35-45. https://doi.org/10.1080/2093761X.2012.759887
14. Bhutta, F. Z. (2017, November 22-23). Application of smart energy technologies in building sector --- future prospects [Conference presentation]. 2017 International Conference on Energy Conservation and Efficiency, Lahore, Pakistan. https://doi.org/10.1109/ECE.2017.8248820
15. Chan, A.P., Darko, A., Ameyaw, E.E., & Owusu-Manu, D.G. (2016). Barriers affecting the adoption of green building technologies. Journal of Management in Engineering, 33(3), Article 04016057. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000507
16. Chumpitaz, B., Rubio, J., Rodriguez, S., & Hinostroza, A. (2020, November 9-11). Application of The Scrum Framework to Optimize Time in Construction Projects [Conference presentation]. 2020 Congreso Internacional de Innovación y Tendencias en Ingeniería (CONIITI), Bogota, Colombia.
17. CollabNet VersionOne. (2022). 16th Annual State of Agile Report. https://digital.ai/resource-center/analyst-reports/state-of-agile-report/
18. Demir, S. T., & Theis, P. (2016, July 18-20). Agile Design Management -- The application of Scrum in the design phase of construction projects [Conference presentation]. 24th Annual Conference of the International Group for Lean Construction, Boston, MA, USA.
19. Dong, B., Prakash, V., Feng, F., & O′Neill, Z. (2019). A review of smart building sensing system for better indoor environment control. Energy and Buildings, 199, 29-46. https://doi.org/10.1016/j.enbuild.2019.06.025
20. Faraji, A., Rashidi, M., Perera, S., & Samali, B. (2022). Applicability-Compatibility Analysis of PMBOK Seventh Edition from the Perspective of the Construction Industry Distinctive Peculiarities. Buildings, 12(2), Article 210. https://doi.org/10.3390/buildings12020210
21. Froufe, M. M., Chinelli, C. K., Guedes, A. L. A., Haddad, A. N., Hammad, A. W. A., & Soares, C. A. P. (2020). Smart buildings: Systems and drivers. Buildings, 10(9), Article 153. https://doi.org/10.3390/buildings10090153
22. Ghansah, F. A., Owusu-Manu, D. G., & Ayarkwa, J. (2021). Project management processes in the adoption of smart building technologies: a systematic review of constraints, Smart and Sustainable Built Environment, 10(2), 208-226.
23. Gupta, A., Poels, G., & Bera, P. (2022). Using Conceptual Models in Agile Software Development: A Possible Solution to Requirements Engineering Challenges in Agile Projects. IEEE Access, 10, 119745-119766. https://doi.org/10.1109/ACCESS.2022.3208561
24. Gustavsson, T. (2016, April 14-15). Benefits of agile project management in a non-software development context - A literature review [Conference presentation]. Fifth International Scientific Conference on Project Management in the Baltic Countries, Riga, Latvia.
25. Highsmith, J., & Cockburn, A. (2001). Agile software development: the business of innovation. Computer, 34(9), 120-127. https://doi.org/10.1109/2.947100
26. Hoda, R., Noble, J., & Marshall, S. (2013). Self-Organizing Roles on Agile Software Development Teams. IEEE Transactions on Software Engineering, 39(3), 422-444. https://doi.org/10.1109/TSE.2012.30
27. Hwang, B. G., & Ng, W. J. (2013). Project management knowledge and skills for green construction: Overcoming challenges. International Journal of Project Management, 31(2), 272-284. https://doi.org/10.1016/j.ijproman.2012.05.004
28. Hwang, B. G., & Tan, J. S. (2012). Green building project management: obstacles and solutions for sustainable development. Sustainable Development, 20(5), 335-349. https://doi.org/10.1002/sd.492
29. Jethva, S. S., & Skibniewski, M. J. (2022). Agile project management for design-build construction projects: A case study. International Journal of Applied Science and Engineering, 19(1), 1-11. https://doi.org/10.6703/IJASE.202203_19(1).001
30. King, J., & Perry, C. (2017). Smart Buildings: Using Smart Technology to Save Energy in Existing Buildings. American Council for an Energy-Efficient Economy.
31. Kitchenham, B., Pickard, L., & Pfleeger, S. L. (1995). Case studies for method and tool evaluation. IEEE software, 12(4), 52-62. https://doi.org/10.1109/52.391832
32. Li, T. T., Wang, K., Sueyoshi, T., & Wang, D. D. (2021). ESG: Research Progress and Future Prospects. Sustainability, 13(21), Article 11663. https://doi.org/10.3390/su132111663
33. Lilis, G., Conus, G., Asadi, N., & Kayal, M. (2017). Towards the next generation of intelligent building: An assessment study of current automation and future IoT based systems with a proposal for transitional design. Sustainable Cities and Society, 28, 473-481. https://doi.org/10.1016/j.scs.2016.08.019
34. Mahamid, I., Bruland, A., & Dmaidi, N. (2012). Causes of Delay in Road Construction Projects. Journal of Management in Engineering, 28(3), 300-310. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000096
35. Marques, J. A. L., Morais, J. J. B. R., Alves, J., & Gonçalves, M. (2023). Effectiveness Analysis of Waterfall and Agile Project Management Methodologies -- A Case Study from Macau′s Construction Industry. Journal of Management Analysis, 12(1), 23-38. https://doi.org/10.1080/23270012.2023.2170268
36. Minoli, D., Sohraby, K., & Occhiogrosso, B. (2017). IoT considerations, requirements, and architectures for smart buildings---Energy optimization and next-generation building management systems. IEEE Internet of Things Journal, 4(1), 269-283. https://doi.org/10.1109/JIOT.2017.2647881
37. Owen, R., Koskela, L., Henrich, G., & Codinhoto, R. (2006, July 25-27). Is Agile Project Management Applicable to Construction? [Conference presentation]. 14th Annual Conference of the International Group for Lean Construction, Santiago, Chile.
38. Ormeño Zender, Y., & García de Soto, B. (2021). Use of Scrum in the rehabilitation of a commercial building in Peru. Construction Innovation, 21(2), 145-163. https://doi.org/10.1108/CI-11-2019-0132
39. Project Management Institute Standards Committee (PMI) (2008). Construction Extension to the PMBOK Guide Third Edition, Project Management Institute, Pennsylvania, USA.
40. Ribeiro, F.L., & Fernandes, M.T. (2010). Exploring agile methods in construction small and medium enterprises: a case study. Journal of Enterprise Information Management, 23(2), 161-180. https://doi.org/10.1108/17410391011019750
41. Schwaber, K., & Beedle, M. (2001). Agile software development with Scrum (Vol. 1). Upper Saddle River, NJ: Prentice Hall.
42. Schwaber, K., & Sutherland, J. (2020). The Scrum Guide. https://scrumguides.org/
43. Scrum.org. (2020). WHAT IS SCRUM? https://www.scrum.org/resources/what-is-scrum
44. So, T. P., Wong, C. W., & Wong, K. C. (2001). A new definition of intelligent buildings for Asia (2nd ed.). Asian Institute of Intelligent Buildings.
45. Streule, T., Miserini, N., Bartlomé, O., Klippel, M., & García de Soto, B. (2016). Implementation of Scrum in the Construction Industry. Procedia Engineering, 164, 269-276. https://doi.org/10.1016/j.proeng.2016.11.619
46. Sutherland, J. (2014). Scrum: the art of doing twice the work in half the time. Crown Business, New York, USA.
47. Szalvay, V. (2004). An Introduction to Agile Software Development. Danube Technologies. https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=2efe4d840631ebf026fede741e85195e36f8b134
48. Trello. (2024). Trello. https://trello.com
49. United Nations Environment Programme. (2022). 2022 Global Status Report for Buildings and Construction. https://www.unep.org/resources/publication/2022-global-status-report-buildings-and-construction
50. Vattano, S. (2014). Smart Buildings for a Sustainable Development. Journal of Economics World, 2(5), 310-324.
http://www.academia.edu/download/35920270/Economics_World_ISSN_2328-7144_Vol.2__No.5__2014.pdf#page525
51. Wong, J. K.W., Li H., & Wang S.W. (2005), Intelligent building research: a review, Automation in Construction, 14(1), 143-159.
52. Yin, R. K. (2018). Case Study Research and Applications: Design and Methods (6th ed.). Thousand Oaks, CA: Sage.
53. Ziauddin, S. K. T., & Zia, S. (2012). An effort estimation model for agile software development. Advances in Computer Science and its Applications, 2(1), 314-324.
指導教授 陳仲儼(Chung-Yang Chen) 審核日期 2024-6-27
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明