skip to main content

Implikasi Integrasi BIM dan ERP Terhadap Pengendalian Volume Pekerjaan Proyek: Studi Kasus Proyek Bendungan

Muhammad Agung Wibowo  -  Departemen Teknik Sipil, Fakultas Teknik, Universitas Diponegoro, Indonesia
Jati Utomo Dwi Hatmoko  -  Departemen Teknik Sipil, Fakultas Teknik, Universitas Diponegoro, Indonesia
*Gildam Satria  -  Departemen Teknik Sipil, Fakultas Teknik, Universitas Diponegoro, Indonesia
Open Access Copyright (c) 2024 TEKNIK

Citation Format:
Abstract

Penggunaan informasi volume dari Building Information Modeling (BIM) pada proyek konstruksi di Indonesia belum efektif dalam meningkatkan kinerja pengendalian anggaran meskipun BIM telah menunjukkan dampaknya terhadap peningkatan kinerja proyek konstruksi bangunan. Salah satu upaya yang dilakukan untuk meningkatkan efektivitas penggunaan informasi BIM adalah dengan mengintegrasikan informasi BIM dengan Enterprise Resource Planning (ERP) dimana ERP sangat membantu dalam pengambilan keputusan. Penelitian ini bertujuan untuk mengevaluasi integrasi informasi BIM BIM dan ERP pada proyek konstruksi dengan studi kasus pada proyek bendungan. Metode penelitian yang digunakan adalah observasi terkait penggunaan informasi volume dari BIM untuk pengendalian anggaran, wawancara mendalam dengan pihak-pihak terkait dalam proyek dan pada kantor pusat pada proyek bendungan dan mengukur informasi volume dari proses BIM dibandingkan dengan anggaran dan menilai seberapa akurat informasi volume tersebut sehingga dapat diandalkan untuk pengendalian volume pekerjaan. Hasil penelitian ini diharapkan dapat memberikan kontribusi dalam penerapan BIM yang efektif untuk pengendalian anggaran melalui integrasi ERP pada proyek bendungan dan menjadi acuan bagi pengambil keputusan dalam upaya meningkatkan kinerja proyek konstruksi.

Fulltext View|Download
Keywords: BIM; ERP; biaya; kendali; integrasi; bendungan

Article Metrics:

  1. Abdel-Hamid, M., & Abdelhaleem, H. M. (2021). Project cost control using five dimensions building information modeling. International Journal of Construction Management. https://doi.org/10.1080/15623599.2021.1880313
  2. Aboabdo, S., Aldhoiena, A., & Al-Amrib, H. (2019). Implementing Enterprise Resource Planning ERP System in a Large Construction Company in KSA. Procedia Computer Science, 164, 463–470. https://doi.org/10.1016/j.procs.2019.12.207
  3. Aladag, H., Demirdögen, G., & Isik, Z. (2016). Building Information Modeling (BIM) Use in Turkish Construction Industry. Procedia Engineering, 161, 174–179. https://doi.org/10.1016/j.proeng.2016.08.520
  4. Althunibat, A., Zahrawi, A. A., Tamimi, A. A., & Altarawneh, F. H. (2019). Measuring the Acceptance of Using Enterprise Resource Planning (ERP) System in Private Jordanian Universities Using TAM Model. International Journal of Information and Education Technology, 9(7), 502–505. https://doi.org/10.18178/ijiet.2019.9.7.1254
  5. Awwad, K. A., Shibani, A., & Ghostin, M. (2020). Exploring the critical success factors influencing BIM level 2 implementation in the UK construction industry: the case of SMEs. International Journal of Construction Management, 0(0), 1–8. https://doi.org/10.1080/15623599.2020.1744213
  6. Babič, N. Č., Podbreznik, P., & Rebolj, D. (2010). Integrating resource production and construction using BIM. Automation in Construction, 19(5), 539–543. https://doi.org/10.1016/j.autcon.2009.11.005
  7. Barkokebas, B., Khalife, S., Al-Hussein, M., & Hamzeh, F. (2021). A BIM-lean framework for digitalisation of premanufacturing phases in offsite construction. Engineering, Construction and Architectural Management, 28(8), 2155–2175. https://doi.org/10.1108/ECAM-11-2020-0986
  8. Chen Charlie C., C. C., Law, C. C. H., & Yang, S. C. (2009). Managing ERP implementation failure: A project management perspective. IEEE Transactions on Engineering Management, 56(1), 157–170. https://doi.org/10.1109/TEM.2008.2009802
  9. Chen, K., Xu, G., Xue, F., Zhong, R. Y., Liu, D., & Lu, W. (2018). A Physical Internet-enabled Building Information Modelling System for prefabricated construction. International Journal of Computer Integrated Manufacturing, 31(4–5), 349–361. https://doi.org/10.1080/0951192X.2017.1379095
  10. Chen, Q., Adey, B. T., Haas, C. T., & Hall, D. M. (2022). Exploiting digitalization for the coordination of required changes to improve engineer-to-order materials flow management. Construction Innovation, 22(1), 76–100. https://doi.org/10.1108/CI-03-2020-0039
  11. Chen, Z., & Hao, S. (2021). Research on the Motivation of Construction Enterprises Accepting BIM. IOP Conference Series: Earth and Environmental Science, 791(1). https://doi.org/10.1088/1755-1315/791/1/012019
  12. CIC. (2020). CIC BIM Standard v.2 2020, Hong Kong (2nd ed., Vol. 148). CIC
  13. Collantes, R., Portilla, J., Rodriguez, S., & Garcia, F. (2020). Time and cost reduction in the production chain of construction projects through collaborative computer systems. 2020 Congreso Internacional de Innovacion y Tendencias En Ingenieria, CONIITI 2020 - Conference Proceedings. https://doi.org/10.1109/CONIITI51147.2020.9240406
  14. D’Amico, F., D’Ascanio, L., De Falco, M. C., Ferrante, C., Presta, D., & Tosti, F. (2020). BIM for infrastructure: An efficient process to achieve 4D and 5D digital dimensions. European Transport - Trasporti Europei, 77
  15. Dantes, G., & Hasibuan, Z. (2010). The Impact of Enterprise Resource Planning (ERP) System Implementation on Organization: Case Study ERP Implementation in Indonesia. IBIMA Business Review Journal, July 2010, 1–10. https://doi.org/10.5171/2011.210664
  16. Davenport, T. H. (1998). Putting the enterprise into the enterprise system. In Harvard business review (Vol. 76, Issue 4, pp. 121–131)
  17. Devos, J., Rajcanovska, J., Van Landeghem, H., & Deschoolmeester, D. (2013). Effect of ERP implementation on the company efficiency - A Macedonian CASE. In Lecture Notes in Business Information Processing: Vol. 139 LNBIP. https://doi.org/10.1007/978-3-642-36611-6_17
  18. Durdyev, S., Omarov, M., & Ismail, S. (2017). Causes of delay in residential construction projects in Cambodia. Cogent Engineering, 4(1). https://doi.org/10.1080/23311916.2017.1291117
  19. Feng, Y., Wang, J., Fan, H., & Hu, Y. (2021). A BIM-Based Coordination Support System for Emergency Response. IEEE Access, 9, 68814–68825. https://doi.org/10.1109/ACCESS.2021.3077237
  20. França, A., & Haddad, A. (2018). Causes of construction projects cost overrun in Brazil. International Journal of Sustainable Construction Engineering and Technology, 9(1), 69–83. https://doi.org/10.30880/ijscet.2018.09.01.006
  21. Ghazaryan, M. (2019). BIM and Cost Estimation Issues (5D): Case of Armenia. IOP Conference Series: Materials Science and Engineering, 698(2). https://doi.org/10.1088/1757-899X/698/2/022076
  22. Ghosh, S., Negahban, S., Kwak, Y. H., & Skibniewski, M. J. (2011). Impact of sustainability on integration and interoperability between BIM and ERP - A governance framework. Proceedings of the 1st International Technology Management Conference, ITMC 2011, 187–193. https://doi.org/10.1109/ITMC.2011.5995975
  23. Hasibuan, Z., & Dantes, G. (2012). Priority of Key Success Factors (KSFS) on Enterprise Resource Planning (ERP) System Implementation Life Cycle. Journal of Enterprise Resource Planning Studies, 2012, 1–15. https://doi.org/10.5171/2011.122627
  24. Hire, S., Sandbhor, S., Ruikar, K., & Amarnath, C. B. (2021). BIM usage benefits and challenges for site safety application in Indian construction sector. Asian Journal of Civil Engineering, 22(7), 1249–1267. https://doi.org/10.1007/s42107-021-00379-8
  25. Holzer, D. (2014). Fostering the link from PLM to ERP via BIM the aec industry in transition. IFIP Advances in Information and Communication Technology, 442, 75–82. https://doi.org/10.1007/978-3-662-45937-9_8
  26. Iso, I. S. (2018). Organization and digitization of information about buildings and civil engineering works, including building information modeling (BIM) - Information management using building information modeling. Iso, 2018
  27. Joblot, L., Danjou, C., Pellerin, R., & Lamouri, S. (2021). Industry 4.0 and BIM: Do They Share the Same Objectives? In Lecture Notes in Mechanical Engineering. https://doi.org/10.1007/978-3-030-70566-4_65
  28. Kaming, P. F., Olomolaiye, P. O., Holt, G. D., & Harris, F. C. (2010). Construction Management and Economics Factors influencing construction time and cost overruns on high-rise projects in Indonesia Factors in ¯ uencing construction time and cost overruns on high-rise projects in Indonesia. Construction Management and Economics, 1(15), 83–94
  29. Kouamou, G. E., Manjia, M. B., & Pettang, C. (2016). Extending an ERP to improve decision-making in civil engineering companies in developing countries such as Cameroon. Journal of Decision Systems, 25, 550–557. https://doi.org/10.1080/12460125.2016.1187425
  30. Larsen, J. K., Ussing, L. F., Brunoe, T. D., & Lindhard, S. M. (2016). The project management process of planning and budgeting in public construction projects. In Civil and Environmental Engineering: Concepts, Methodologies, Tools, and applications (Vol. 3). https://doi.org/10.4018/978-1-4666-9619-8.ch055
  31. Lee, J., Yang, H., Lim, J., Hong, T., Kim, J., & Jeong, K. (2020). BIM-based preliminary estimation method considering the life cycle cost for decision-making in the early design phase. Journal of Asian Architecture and Building Engineering, 19(4), 384–399. https://doi.org/10.1080/13467581.2020.1748635
  32. Leicht, D., Castro-Fresno, D., Dìaz, J., & Baier, C. (2020). Multidimensional construction planning and agile organized project execution-The 5D-PROMPT method. Sustainability (Switzerland), 12(16Leicht, D.,
  33. Castro-Fresno, D., Dìaz, J., Baier, C. (2020). Multidimensional construction planning and agile organized project execution-The 5D-PROMPT method. Sustainability (Switzerland), 12(16). https://doi.org/10.3390/SU12166340).
  34. Patil, Y. K., & Bhangale, P. P. (2016). Investigation of Factors Influencing Cost Overrun in High-Rise Building Constructions. International Journal of Latest Trends in Engineering and Technology (IJLTET), 6(3), 338–342. http://www.ijltet.org/journal/50.pdf
  35. Sarkar, D., Pandya, K., Dave, B., Jha, K. N., & Dhaneshwar, D. (2022). Development of an integrated BIM-ERP-IoT module for construction projects in Ahmedabad. Innovative Infrastructure Solutions, 7(1). https://doi.org/10.1007/s41062-021-00656-0
  36. Shafi, K., Ahmad, U. S., Nawab, S., Bhatti, W. K., Shad, S. A., Hameed, Z., Asif, T., & Shoaib, F. (2019). Measuring performance through enterprise resource planning system implementation. IEEE Access, 7(c), 6691–6702. https://doi.org/10.1109/ACCESS.2018.2884900
  37. Susanti, R. (2020). Cost overrun and time delay of construction project in Indonesia. Journal of Physics: Conference Series, 1444(1). https://doi.org/10.1088/1742-6596/1444/1/012050
  38. Vitásek, S., & Matějka, P. (2017). Utilization of BIM for automation of quantity takeoffs and cost estimation in transport infrastructure construction projects in the Czech Republic. IOP Conference Series: Materials Science and Engineering, 236(1). https://doi.org/10.1088/1757-899X/236/1/012110
  39. Wang, M., Altaf, M. S., Al-Hussein, M., & Ma, Y. (2020). Framework for an IoT-based shop floor material management system for panelized home building. International Journal of Construction Management, 20(2), 130–145. https://doi.org/10.1080/15623599.2018.1484554
  40. Yoo, B. K., & Kim, S. H. (2021). Analysis of Impact on ERP Customization Module Using CSR Data. Journal of Information Processing Systems, 17(3), 473–488. https://doi.org/10.3745/JIPS.04.0215
  41. Zhai, Y., Chen, K., Zhou, J. X., Cao, J., Lyu, Z., Jin, X., Shen, G. Q. P., Lu, W., & Huang, G. Q. (2019). An Internet of Things-enabled BIM platform for modular integrated construction: A case study in Hong Kong. Advanced Engineering Informatics, 42(September), 100997. https://doi.org/10.1016/j.aei.2019.10099

Last update:

No citation recorded.

Last update: 2024-06-28 01:32:26

No citation recorded.