Design of Decision Support System in Determining Maintenance Priority Using Weighted Product (WP) Method

Authors

  • Puja Memo Dwi Setiawan Universitas Putra Indonesia YPTK Padang
  • Romi Hardianto Universitas Putra Indonesia YPTK Padang
  • Radius Prawiro Universitas Putra Indonesia YPTK Padang

DOI:

https://doi.org/10.35134/jcsitech.v11i1.115

Keywords:

: Decision Support System, Weighted Product, Maintenance, Facilities

Abstract

Technological developments are very dynamic so that the information produced is fast and accurate, starting from an office to the educational level. Management of facility maintenance data at State Senior High School 2 Sijunjung is still done manually. Determining facility maintenance work based on manual management can cause the determination of facility maintenance work to be irrelevant. To overcome this problem, a decision support system is needed that can improve the process of managing and determining facility maintenance work using the Weighted Product (WP) method. The Weighted Product (WP) method is a multi-criteria decision-making method used to solve the problem of selecting the best option from several available alternatives. Based on the results of the analysis in the process of determining facility maintenance, the researcher made manual calculations using the weighted product method where there are 5 criteria and 15 alternatives. From the results of these calculations, the researcher made a decision by looking at the ranking of the WP calculation where the art room was ranked first with a value of 0.0900. This system is expected to be able to assist schools in managing facility data that affects the determination of facility maintenance work priorities and as a basis for decision-making in determining facility maintenance work

References

Khadaffi, Y., Jupriyadi, J., & Kurnia, W. (2021). Smart School Application for Teacher Needs in the New Normal Era (Case Study: SMA Negeri 1 Krui). Journal of Technology and Information Systems, 2(2), 15-23. https://doi.org/10.33365/jtsi.v2i2.866

Yani, F. (2016). Decision Support System for Selecting Outstanding Students at STMIK Atma Luhur Pangkalpinang Using the Analytical Hierarchy Process (AHP) Method. National Journal of Technology and Information Systems, 2(2), 109-118. https://doi.org/10.25077/TEKNOSI.v2i2.2016.109-118

Saraski, SA, Lubis, AN, & Parapak, RPA (2022). Decision Support System in Determining Favorite Lecturers Using Profile Matching Method. Journal of Technology and Information Systems, 3(1), 46-53. https://doi.org/10.33365/jtsi.v3i1.1699

Simbolon , M. E. , Saifullah , S., & Hardinata, JT (2019). Spk in Recommending the Best Pesticides to Kill Pests on Rice Plants Using the Lethal Method. KOMIK (National Conference on Information and Computer Technology), 3(1). https://doi.org/10.30865/komik.v3i1.1676

Ramadiani, R., Rahmah, A. (2019). Decision Support System for Selecting Exemplary Health Workers Using the Multi Attribute Utility Theory Method. Scientific Journal of Information Systems Technology, 5(1), 1-12, https://doi.org/10.26594/register.v5i1.1273 .

Aldo, D., Putra, N., Munir, Z. (2019). Decision Support System for Lecturer Performance Assessment Using the Multi Attribute Utility Theory (MAUT) Method, JURSIMA (Journal of Information Systems and Management), 7(2), 16-22, https://doi.org/10.47024/js.v7i2.180 .

Fujirwan , D. , Arhami, M., Amalia, I. (2018). Decision Support System for Accepting Home Renovation Assistance for the Poor Using the Multi Attribute Utility Theory Method. Infomedia Journal, 3(2), 49-57, http://dx.doi.org/10.30811/jim.v3i2.713

From, RW, Sapriadi, S., Rahmi, NA, & Purnama, PAW (2023). Multi Attribute Utility Theory (MAUT) Method for Decision Support System for Used Car Selection. KomtekInfo Journal, 73-79. https://doi.org/10.35134/komtekinfo.v10i2.378

Seran, F., Kelen, YP, & Nababan, D. (2023). Decision Support System for Determining Majors Using the Weighted Product Method. Jurnal Tekno Kompak, 17(1), 147-159. https://doi.org/10.33365/jtk.v17i1.2154

Roni, R., Sumijan, S., & Santony, J. (2019). Weighted Product Method in Selecting Scholarship Recipients for Students. RESTI Journal (System Engineering and Information Technology), 3(1), 87-93. https://doi.org/10.29207/resti.v3i1.834

Alifa, F. (2017). Design and Construction of a Decision Support System for Course Interest Using the Weighted Product Method. Journal of Informatics Management, 8(1).

Dewi, SS, Putri, PEB, Lasarwan, MH, & Meo, AD (2023). Decision Support System for Selecting Strategic Culinary Tourism Locations in Kupang City Using Weighted Product. Jurnal Sosial Teknologi, 3(11), 911-917. https://doi.org/10.59188/jurnalsostech.v3i11.976

Riati, I., Prima, W., & Ali, G. (2023). Decision Support System for Selecting the Best Lecturer Using the Weighted Product Method. International Journal of Technology Vocational Education and Training, 4(1), 22-27. https://doi.org/10.46643/ijtvet.v4i1.103

Aziz, NK, & Mufti, M. (2024). Application of Weighted Product Method in Web-Based Supplier Selection Decision Support System Application. Ticom Journal: Technology of Information and Communication, 12(2), 56-63. https://doi.org/10.70309/ticom.v12i2.110

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Published

2025-01-31

How to Cite

Setiawan, P. M. D., Hardianto, R., & Prawiro, R. (2025). Design of Decision Support System in Determining Maintenance Priority Using Weighted Product (WP) Method. Journal of Computer Scine and Information Technology, 11(1), 6–12. https://doi.org/10.35134/jcsitech.v11i1.115