Analysis of Benefits of RFID Technology Implementation in Improving Precast Concrete Material Management Systems in Indonesian Construction

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Material management is a crucial factor that needs to be considered in any construction project. Poor material management can significantly impact the construction's quality, time, and cost. In Indonesia, the implementation of technology in construction, particularly in the field of materials management, is still not developing rapidly. Therefore, this study aims to identify the issues with the precast material management system in Indonesia and the benefits of implementing RFID technology to improve it. The methods employed include quantitative surveys with expert validation, pilot surveys, questionnaire surveys, data testing, and the Relative Importance Index (RII) method. The quantitative survey involved 50 respondents, selected based on specific criteria. The primary issue arising from the absence of RFID technology in precast material management in Indonesia is the inconsistency between the quantity and quality of precast materials arriving at the construction site. The lack of an automated tracking and data collection system is a contributing factor to these issues. Meanwhile, the main benefit of implementing RFID technology in improving precast material management systems in Indonesia is the ability to maintain accurate and up-to-date inventory records of precast materials. RFID technology enables real-time storage of comprehensive information, thereby minimizing material data recording errors.

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65-82

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April 2024

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[1] BPS, "Laju Pertumbuhan Penduduk (Persen), 2020-2022," bps.go.id, 2022. https://www.bps.go.id/indicator/12/1976/1/laju-pertumbuhan-penduduk.html (accessed Feb. 17, 2023).

DOI: 10.47065/jimat.v1i2.104

Google Scholar

[2] Kementerian PUPR Republik Indonesia, "Buku I Konstruksi Indonesia 2021: Era Baru Konstruksi Berkarya Menuju Indonesia Maju," p.342, 2021.

Google Scholar

[3] Z. Citra, B. Susetyo, and P. Wibowo, "Optimasi Kinerja Proyek Dengan Penerapan Metode Crashing Dan Linear Programming Pada Proyek Bulk Godown," Rekayasa Sipil, vol. 7, no. 2, p.106, 2019.

DOI: 10.22441/jrs.2018.v07.i2.05

Google Scholar

[4] E. Rita, N. Carlo, and Nandi, "Penyebab Dan Dampak Keterlambatan Pekerjaan Jalan Di Sumatera Barat Indonesia," J. Rekayasa, vol. 11, no. 1, p.27–37, 2022.

DOI: 10.37037/jrftsp.v11i1.94

Google Scholar

[5] S. A. Azlan, A. Smith, M. Pitt, and C. H. Choon, "Contractor's Perception of Factors Contributing To Project Delay: Case Studies Of Commercial Projects in Klang Valley, Malaysia," J. Des. Build Environ., vol. 7, no. 1, p.17, 2012.

Google Scholar

[6] S. Intan, R. S. Alifen, and L. Arijanto, "Analisa Dan Evaluasi Sisa Material Konstruksi :," Civ. Eng. Dimens., vol. 7, no. 1, p.36–45, 2005.

Google Scholar

[7] F. N. U. R. Pangestu, "Pengaruh Faktor Penyebab Keterlambatan Pada Proyek Konstruksi di Masa Pandemi COVID-19 Terhadap Kinerja Waktu dengan Metode Structural Equation Modeling Pada Masa New Normal SKRIPSI," 2021. [Online]. Available: https://lib.ui.ac.id/detail?id=20526018&lokasi=lokal

DOI: 10.47233/rivet.v1i01.231

Google Scholar

[8] T. Gebrehiwet and H. Luo, "Analysis of Delay Impact on Construction Project Based on RII and Correlation Coefficient: Empirical Study," Procedia Eng., p.366–374, 2017, [Online]. Available: https://pdf.sciencedirectassets.com

DOI: 10.1016/j.proeng.2017.07.212

Google Scholar

[9] P. Patil and A. Shelake, "Application of RFID Technology to Improve Material Management on Construction Sites," Int. Res. J. Eng. Technol., p.1000–1003, 2021, [Online]. Available: www.irjet.net

Google Scholar

[10] BPS, "Kepadatan Penduduk menurut Provinsi (jiwa/km2), 2019-2021," bps.go.id, 2021. https://www.bps.go.id/indicator/12/141/1/kepadatan-penduduk-menurut-provinsi.html (accessed Feb. 20, 2023).

Google Scholar

[11] BPS, "Jumlah Kendaraan Bermotor Menurut Provinsi dan Jenis Kendaraan (unit), 2021," bps.go.id, 2021. https://www.bps.go.id/indikator/indikator/view_data_pub/0000/ api_pub/V2w4dFkwdFNLNU5mSE95Und2UDRMQT09/da_10/1 (accessed Feb. 20, 2023).

Google Scholar

[12] Kementrian PUPR, "Menteri Basuki Dukung Pengembangan Industri Precast Nasional," pu.go.id, 2017. https://pu.go.id/berita/menteri-basuki-dukung-pengembangan-industri-precast-nasional (accessed Feb. 13, 2023).

Google Scholar

[13] M. Alim, "Menteri PUPR Dorong Pengembangan Industri Precast Nasional," jurnas.com, 2017. https://www.jurnas.com/artikel/16275/Menteri-PUPR-Dorong-Pengembangan-Industri-Precast-Nasional/ (accessed Feb. 13, 2023).

Google Scholar

[14] N. Herawati, "12 Permasalahan Konstruksi dalam Proyek Pembangunan Infrastruktur," www.hashmicro.com, 2022. https://www.hashmicro.com/id/8-permasalahan-konstruksi-dalam-proyek-pembangunan-infrastruktur/ (accessed Feb. 13, 2023).

DOI: 10.35814/infrastruktur.v4i1.716

Google Scholar

[15] Dinas PUPR, "Pengaruh Revolusi Industri 4.0 terhadap Dunia Konstruksi," dinaspupr.bandaacehkota.go.id, 2020. https://dinaspupr.bandaacehkota.go.id/2020/07/29/pengaruh-revolusi-industri-4-0-terhadap-dunia-konstruksi/ (accessed Feb. 13, 2023).

DOI: 10.31219/osf.io/pswmu

Google Scholar

[16] R. Y. Zhong et al., "Prefabricated construction enabled by the Internet-of-Things," Autom. Constr., vol. 76, p.59–70, 2017.

DOI: 10.1016/j.autcon.2017.01.006

Google Scholar

[17] S. Wu and Q. Liu, "Analysis on the Application of BIM and RFID in Life Cycle Management of Prefabricated Building," IOP Conf. Ser. Mater. Sci. Eng., vol. 780, no. 3, p.1–6, 2020.

DOI: 10.1088/1757-899X/780/3/032012

Google Scholar

[18] PMI, PMBOK,6th edition. 2017.

Google Scholar

[19] T. W. W. Utama, "Dasar-Dasar Manajemen Proyek Dan Pengendalian Proyek," Pelatih. Pejabat Inti Satuan Kerja, vol. 758, p.356, 2018, [Online]. Available: https://simantu.pu.go.id/

Google Scholar

[20] J. Majrouhi Sardroud, "Influence of RFID technology on automated management of construction materials and components," Sci. Iran., vol. 19, no. 3, p.381–392, 2012.

DOI: 10.1016/j.scient.2012.02.023

Google Scholar

[21] M. Safa, A. Shahi, C. T. Haas, and K. W. Hipel, "Supplier selection process in an integrated construction materials management model," Autom. Constr., vol. 48, p.64–73, 2014.

DOI: 10.1016/j.autcon.2014.08.008

Google Scholar

[22] S. Kasus, J. Landak, K. Pontianak, G. R. Pantula, S. M. Nuh, and M. Indrayadi, "Manajemen Material Pada Proyek Konstruksi Jembatan," p.278–285, 2015.

Google Scholar

[23] R. Rizky, Maulana & Isriana, "Desain Fasade Bangunan Tinggi Apartemen Dengan Aplikasi Panel Beton Pracetak," Reka Karsa, p.1–15, 2015.

Google Scholar

[24] G. Saktika, "Mengenal Beton Precast: Kelebihan, Jenis, Dan Harga Terbaru 2022," berita.99.co, 2022. https://berita.99.co/beton-precast/ (accessed Jun. 28, 2023).

Google Scholar

[25] V. W. Y. Tam, C. M. Tam, S. X. Zeng, and W. C. Y. Ng, "Towards adoption of prefabrication in construction," Build. Environ., vol. 42, no. 10, p.3642–3654, 2007.

DOI: 10.1016/j.buildenv.2006.10.003

Google Scholar

[26] Z. Wang, H. Hu, J. Gong, X. Ma, and W. Xiong, "Precast supply chain management in off-site construction: A critical literature review," J. Clean. Prod., vol. 232, p.1204–1217, 2019.

DOI: 10.1016/j.jclepro.2019.05.229

Google Scholar

[27] W. Lu, G. Q. Huang, and H. Li, "Scenarios for applying RFID technology in construction project management," Autom. Constr., vol. 20, no. 2, p.101–106, 2011.

DOI: 10.1016/j.autcon.2010.09.007

Google Scholar

[28] N. Maghfirah, "Pengimplementasian RFID dalam Perkembangan Teknologi," http://reslab.sk.fti.unand.ac.id/, 2021. http://reslab.sk.fti.unand.ac.id/index.php?option= com_k2&view=item&id=245: pengimplementasian-rfid-dalam-perkembangan-teknologi& Itemid=342 (accessed Feb. 22, 2023).

Google Scholar

[29] E. Valero and A. Adán, "Integration of RFID with other technologies in construction," Meas. J. Int. Meas. Confed., vol. 94, p.614–620, 2016.

DOI: 10.1016/j.measurement.2016.08.037

Google Scholar

[30] C. Z. Li et al., "Integrating RFID and BIM technologies for mitigating risks and improving schedule performance of prefabricated house construction," J. Clean. Prod., vol. 165, p.1048–1062, 2017.

DOI: 10.1016/j.jclepro.2017.07.156

Google Scholar

[31] I. Popova et al., "Application of the RFID technology in logistics," Transp. Res. Procedia, vol. 57, p.452–462, 2021.

DOI: 10.1016/j.trpro.2021.09.072

Google Scholar

[32] Priyono, Metode Penelitian Kuantitatif, vol. 13, no. 1. 2016.

Google Scholar

[33] M. S. Altaf, A. Bouferguene, H. Liu, M. Al-Hussein, and H. Yu, "Integrated production planning and control system for a panelized home prefabrication facility using simulation and RFID," Autom. Constr., vol. 85, no. February 2017, p.369–383, 2018.

DOI: 10.1016/j.autcon.2017.09.009

Google Scholar

[34] H. D. Wuala and A. D. Rarasati, "Causes of delays in construction project for developing Southeast Asia countries," IOP Conf. Ser. Mater. Sci. Eng., vol. 830, no. 2, 2020.

DOI: 10.1088/1757-899X/830/2/022054

Google Scholar

[35] R. F. Aziz and A. A. Abdel-Hakam, "Exploring delay causes of road construction projects in Egypt," Alexandria Eng. J., vol. 55, no. 2, p.1515–1539, 2016, doi: 10.1016/j.aej. 2016.03.006.

DOI: 10.1016/j.aej.2016.03.006

Google Scholar

[36] T. Y. Lee, F. Ahmad, M. A. Abdul Rahman, and M. Awang, "RFID-cloud construction equipment management system framework: Current issues and user needs," Mater. Today Proc., no. xxxx, 2022.

DOI: 10.1016/j.matpr.2022.12.089

Google Scholar

[37] D. Liu, X. Li, J. Chen, and R. Jin, "Real-Time Optimization of Precast Concrete Component Transportation and Storage," Adv. Civ. Eng., vol. 2020, 2020.

DOI: 10.1155/2020/5714910

Google Scholar

[38] A. Patrucco, F. Ciccullo, and M. Pero, "Industry 4.0 and supply chain process re-engineering: A coproduction study of materials management in construction," Bus. Process Manag. J., vol. 26, no. 5, p.1093–1119, 2020.

DOI: 10.1108/BPMJ-04-2019-0147

Google Scholar

[39] A. Lanko, N. Vatin, and A. Kaklauskas, "Application of RFID combined with blockchain technology in logistics of construction materials," MATEC Web Conf., vol. 170, p.1–7, 2018.

DOI: 10.1051/matecconf/201817003032

Google Scholar

[40] G. Ma, J. Jiang, and S. Shang, "Visualization of Component Status Information of Prefabricated Concrete Building Based on Building Information Modeling and Radio Frequency Identification: A Case Study in China," Adv. Civ. Eng., vol. 2019, 2019.

DOI: 10.1155/2019/6870507

Google Scholar

[41] Q. Chen, B. T. Adey, C. Haas, and D. M. Hall, "Using look-ahead plans to improve material flow processes on construction projects when using BIM and RFID technologies," Constr. Innov., vol. 20, no. 3, p.471–508, 2020.

DOI: 10.1108/CI-11-2019-0133

Google Scholar

[42] E. L. S. Abbott and D. K. H. Chua, "The Intelligent use of RFID and BIM in Prefabricated, Prefinished, Volumetric Construction Work Flow," MATEC Web Conf., vol. 312, p.04005, 2020.

DOI: 10.1051/matecconf/202031204005

Google Scholar

[43] R. yau Huang, T. Y. Tsai, and H. H. Wang, "Developing an RFID-based tracking system to improve the control of construction surplus soil disposal in Taiwan," J. Chinese Inst. Eng. Trans. Chinese Inst. Eng. A, vol. 42, no. 2, p.175–188, 2019.

DOI: 10.1080/02533839.2018.1553629

Google Scholar

[44] J. Du, V. Sugumaran, and B. Gao, "RFID and multi-agent based architecture for information sharing in prefabricated component supply chain," IEEE Access, vol. 5, p.4132–4139, 2017.

DOI: 10.1109/ACCESS.2017.2665778

Google Scholar

[45] S. Seyis and A. M. Sönmez, "Analysis of the benefits, challenges and risks for the integrated use of BIM, RFID and WSN: a mixed method research," Constr. Innov., 2022.

DOI: 10.1108/CI-04-2021-0078

Google Scholar

[46] B. Darma, Statistika Penelitian Menggunakan SPSS. 2021.

Google Scholar

[47] R. Maulid, "Contoh Teknik Analisis Data dalam Uji Homogenitas," dqlab.id, 2022. https://www.dqlab.id/contoh-teknik-analisis-data-dalam-uji-homogenitas#:~:text=Uji homogenitas adalah pengujian yang,levene%2C fisher atau uji bartlett. (accessed Mar. 05, 2023).

DOI: 10.31869/ip.v7i1.2281

Google Scholar