Development of information systems on the integration of EDGE certification, BIM and WBS implementation in operational and maintenance work of flats in DKI Jakarta Province to increase effectiveness and efficiency of time and cost

https://doi.org/10.21744/irjeis.v11n1.2495

Authors

  • Eltriyana Rofi'ah Universitas Indonesia, Depok, West Java 16424, Indonesia
  • Yusuf Latief Universitas Indonesia, Depok, West Java 16424, Indonesia

Keywords:

BIM and WBS, information system, integration of EDGE certification implementation, maintenance of flats, operational work

Abstract

The construction of flats is one of the efforts of the DKI Jakarta Government to provide decent housing as mandated in Law No. 20 of 2011 and to address the housing backlog in DKI Jakarta Province. Limited land availability means that house construction must be carried out vertically with complexity in its operation and maintenance. This study aims to improve the effectiveness and efficiency of time and costs in the operational and maintenance work of flats in DKI Jakarta Province through the development of an information system for the application of EDGE Certification, BIM, and WBS integration. The methodology used is a questionnaire and interviews involving many experts, namely EDGE Experts and BIM Experts, and related respondents. The results of the study prove that the Development of an Information System for the Integration of the Application of EDGE Certification, BIM, and WBS in the Operational and Maintenance Work of Flats in DKI Jakarta Province can improve the effectiveness and efficiency of time and costs with a linear equation Y = 1.208 + 0.089 X1 + 0.322 X2 + 0.499 X3 – 0.161 X4.

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References

Al-Kasasbeh, M., Abudayyeh, O., & Liu, H. (2021). An integrated decision support system for building asset management based on BIM and Work Breakdown Structure. Journal of Building Engineering, 34, 101959. https://doi.org/10.1016/j.jobe.2020.101959

Attanatwong, N. (2000). Apartment management information system.

Aziz, A. A., Ahmad, A. S., & Nordin, T. E. (2012). Vitality of flats outdoor space. Procedia-Social and Behavioral Sciences, 36, 402-413. https://doi.org/10.1016/j.sbspro.2012.03.044

Bilov, V., Goi, V., Mamonov, K., Tregub, O., & Levchenko, O. (2023). Advantages of building information modeling (bim) during the operational life. Amazonia Investiga, 12(68), 346-363.

Cozza, S., Chambers, J., Brambilla, A., & Patel, M. K. (2021). In search of optimal consumption: A review of causes and solutions to the Energy Performance Gap in residential buildings. Energy and Buildings, 249, 111253. https://doi.org/10.1016/j.enbuild.2021.111253

de Souza, I. T., Rosa, A. C., Evangelista, A. C. J., Tam, V. W., & Haddad, A. (2021). Modelling the work-as-done in the building maintenance using a layered FRAM: A case study on HVAC maintenance. Journal of Cleaner Production, 320, 128895. https://doi.org/10.1016/j.jclepro.2021.128895

Ding, Z., Liu, S., Liao, L., & Zhang, L. (2019). A digital construction framework integrating building information modeling and reverse engineering technologies for renovation projects. Automation in construction, 102, 45-58. https://doi.org/10.1016/j.autcon.2019.02.012

Gorla, N., Somers, T. M., & Wong, B. (2010). Organizational impact of system quality, information quality, and service quality. The journal of strategic information systems, 19(3), 207-228. https://doi.org/10.1016/j.jsis.2010.05.001

Law of the Republic of Indonesia No. 2 of 2024

Lee, S., & Akin, Ö. (2011). Augmented reality-based computational fieldwork support for equipment operations and maintenance. Automation in Construction, 20(4), 338-352. https://doi.org/10.1016/j.autcon.2010.11.004

Madureira, S., Flores-Colen, I., de Brito, J., & Pereira, C. (2017). Maintenance planning of facades in current buildings. Construction and building materials, 147, 790-802. https://doi.org/10.1016/j.conbuildmat.2017.04.195

Park, J., & Cai, H. (2017). WBS-based dynamic multi-dimensional BIM database for total construction as-built documentation. Automation in Construction, 77, 15-23. https://doi.org/10.1016/j.autcon.2017.01.021

Regulation of the Minister of Public Works Number 24/PRT/M/2008 dated 30 December 2008 http://edgebuilding.com

RP3KP Document of the Public Housing and Settlement Area Service of DKI Jakarta Province

Santosi & Salim. (2017). Household Electricity Savings in Supporting National Energy Stability and Environmental Sustainability. Indonesia: Journal of Environmental Technology Vol. 20, No. 2, July 2019.

Volk, R., Stengel, J., & Schultmann, F. (2014). Building Information Modeling (BIM) for existing buildings—Literature review and future needs. Automation in construction, 38, 109-127. https://doi.org/10.1016/j.autcon.2013.10.023

Widarti, E., Joosten, J., Pratiwi, P. Y., Pradnyana, G. A., Indradewi, I. G. A. A. D., Kamilah, N., ... & Sepriano, S. (2024). Buku Ajar Pengantar Sistem Informasi. PT. Sonpedia Publishing Indonesia.

Zhao, X. G., & Gao, C. P. (2022). Research on Energy‐Saving Design Method of Green Building Based on BIM Technology. Scientific Programming, 2022(1), 2108781.

Published

2025-01-01

How to Cite

Rofi’ah, E., & Latief, Y. (2025). Development of information systems on the integration of EDGE certification, BIM and WBS implementation in operational and maintenance work of flats in DKI Jakarta Province to increase effectiveness and efficiency of time and cost. International Research Journal of Engineering, IT and Scientific Research, 11(1), 23–34. https://doi.org/10.21744/irjeis.v11n1.2495

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Section

Research Articles