Implementasi Infrastruktur TI Berbasis Virtualisasi untuk Meningkatkan Efisiensi dan Fleksibilitas Sistem Informasi di SMK Modis Tenjo

Authors

  • Agung Wibawa Universitas Pamulang
  • Habib Nurfaiza Universitas Pamulang
  • Budianto Budianto Universitas Pamulang

DOI:

https://doi.org/10.59024/jiti.v4i3.2248

Keywords:

High Availability, IT Infrastructure, System Efficiency, Virtualisation, Vmware

Abstract

The development of information technology encourages educational institutions to have IT infrastructure that is efficient, flexible, and capable of optimally supporting information system services. However, the use of separate physical servers often results in low resource utilization, high operational costs, and limitations in system management. This study aims to implement virtualization-based IT infrastructure to improve the efficiency and flexibility of the information system at SMK MODIS Tenjo. The research method used is an experiment with a quantitative approach through a pre-test and post-test design. The research stages include needs analysis, virtualization system design, VMware ESXi implementation, and migration of physical servers to virtual (Physical to Virtual/P2V), as well as testing and evaluating system performance. The research results show that the implementation of virtualisation successfully consolidated 15 physical servers into 3 host servers with several virtual machines without reducing service quality. In addition, CPU utilisation increased from 12% to 75%, operational costs decreased by up to 46%, and server deployment time was reduced from 5 days to less than 2 hours. The implementation of High Availability (HA) features also improved system reliability by reducing service recovery time from 3 days to less than 2 hours. Based on these results, virtualisation has proven effective in enhancing the efficiency, flexibility, and reliability of IT infrastructure in the educational environment.

References

Attar Khorasani, S., Sherpa, L., Lieber, M., & Ghiasvand, S. (2026). Seamless Transitions: A Comprehensive Review of Live Migration Technologies. J Cloud Comp: Journal of Cloud Computing, 15(1), 42. https://doi.org/10.1186/s13677-026-00883-9

Bulhakova, O. F. (2025). Review and Synthesis of Virtualization Implementation Practices in IT Professional Training. System and Technologies, 2(70), 102–111. https://doi.org/10.32782/2521-6643-2025-2-70.11

Friis, S., Larsen, L. M. P., & Ruepp, S. (2023). Strategies for Minimization of Energy Consumption in Data Centers. ICN 2023: The Twenty-Second International Conference on Networks, 17–22.

Han, X., Wang, J., Wu, J., & Song, J. (2025). Energy-Efficient Cloud Systems: Virtual Machine Consolidation with Γ-Robustness Optimization. IScience, 28(3), 111897. https://doi.org/10.1016/j.isci.2025.111897

Kesa, D. M. (2023). Ensuring Resilience: Integrating IT Disaster Recovery Planning and Business Continuity for Sustainable Information Technology Operations. WJARR: World Journal of Advanced Research and Reviews, 18(3), 970–992. https://doi.org/10.30574/wjarr.2023.18.3.1166

Kolodii, V., Koreneva, I., Prokopenko, N., Huda, O., & Shaforost, Y. (2025). Development of Interactive Virtual Laboratories for Distance Learning in Natural Sciences. Eduweb, 19(3), 153–168. https://doi.org/10.46502/issn.1856-7576/2025.19.03.10

Koroma, M., Fofanah, K., Kamara, G. S., Konteh, A. S., & Koroma, I. (2025). Evaluating the Adoption of Virtualization and Cloud Computing as Strategic IT Outsourcing Solutions for Enhancing Educational Efficiency at Njala University. IRJIET: International Research Journal of Innovations in Engineering and Technology, 9(5), 400–416. https://doi.org/10.47001/IRJIET/2025.905045

Lambert, S., Ostapenco, V., Lefevre, L., Caron, E., Orgerie, A.-C., Fichel, B., & Grivel, R. (2026). Revisiting Virtual Machine Consolidation to Save Resources and Energy in Heterogeneous Production Cloud Infrastructures. The International Journal of High Performance Computing Applications, 40(3), 383–403. https://doi.org/10.1177/10943420251399694

Maiyza, A. I., Hassan, H. A., Sheta, W. M., Banawan, K., & Korany, N. O. (2025). VTGAN Based Proactive VM Consolidation in Cloud Data Centers Using Value and Trend Approaches. Scientific Reports, 15(1), 20133. https://doi.org/10.1038/s41598-025-04757-z

Martins, M. R. (2023). From On-Premise to Cloud: Evolving IT Infrastructure For The AI Age. WJARR: World Journal of Advanced Research and Reviews, 20(3), 1898–1934. https://doi.org/10.30574/wjarr.2023.20.3.1590

Oktageri, D., Sukardi, Usmeldi, Wagino, & Effendi, H. (2025). Emerging Trends of Virtual Laboratories in Vocational Education : A Bibliometric Analysis. Journal for Lesson and Learning Studies, 8(2), 351–364. https://doi.org/10.23887/jlls.v8i2.96277

Putra, A. E. P., Chulkamdi, M. T., & Mawaddah, U. (2025). Pemanfaatan Docker pada Virtualisasi Server untuk Mengoptimalkan Kinerja Aplikasi berbasis Web menggunakan Multiserver. JUMISTIK: Jurnal Manajemen Informatika, Sistem Informasi Dan Teknologi Komputer, 4(2), 707–718. https://doi.org/10.70247/jumistik.v4i2.203

Ramadhan, R., Hardiansyah, & Sundawa, F. (2026). Analisis Performa Jaringan Komputer Menggunakan Teknologi Virtualisasi Untuk Efisiensi Sumber Daya Internet. SIDATA: Jurnal Sistem Informasi, Sains Data, Dan Informatika, 1(1), 11–15. https://doi.org/10.56956/97rtjp69

Rido, R., Pahlevi, M. R., Maliki, I., & Iqbal, M. (2026). Implementasi Server Virtualisasi Menggunakan Proxmox untuk Manajemen Infrastruktur Jaringan dan Layanan Internet pada Institusi Pendidikan. Jurnal Sistem Informasi, Sains Data, Dan Informatika, 1(1), 25–33. https://doi.org/10.56956/s6zv7r91

Rosener, W. J., Train, M. A. V., & Shapiro, J. M. (2025). A Case for Virtual Desktops : Enhancing Software Access and Learning in an Online DBMS Course. Journal of Cases on Information Technology, 27(1), 1–21. https://doi.org/10.4018/JCIT.382568

Rozekhani, S. M., Mahan, F., & Pedrycz, W. (2025). VM Consolidation Steps in Cloud Computing: A Perspective Review. Simulation Modelling Practice and Theory, 138, 103034. https://doi.org/10.1016/j.simpat.2024.103034

Sanantagraha, A. I., & Mahadewi, E. P. (2024). The Role of Virtualization Technology to Increase Operational Cost Efficiency of Indonesian SMEs: Case Study of Internet Service Providers. International Journal of Science, Technology & Management, 5(5), 1050–1058. https://doi.org/10.46729/ijstm.v5i5.1161

Savu-jivanov, A., Stolojescu-crisan, C., Gal, J., Trinc, E., & Ancuti, C. (2025). Leveraging GNS3 and VMware ESXi for Scalable, Hands-on Education. 2025 International Symposium on Signals, Circuits and Systems (ISSCS), 1-. https://doi.org/10.1109/ISSCS66034.2025.11105622

Sofiah, N., Ulayya, S., Hermalinda, N. I., & Eriana, E. S. (2026). Analisis Virtualisasi dalam Meningkatkan Efisiensi Sumber Daya Komputasi pada Cloud Modern. TEKNOBIS: Teknologi, Bisnis, Dan Pendidikan, 3(4), 600–606.

Sukardjo, M., Khasanah, U., Rahmat, S. T., Khaerudin, K., & Setiawan, B. (2023). Virtual Laboratory Design for Learning Electro-Pneumatic Practices in Vocational High Schools. European Journal of Educational Research, 12(2), 719–737. https://doi.org/10.12973/eu-jer.12.2.719

Tokhayeva, A., Alzhanov, A., Smakova, N., Abuov, A., & Mukhtarkyzy, K. (2026). Virtualisation in Higher Education From 2018 to 2025 : A Systematic Review of Modern Tools, Learning Impact , and Cost Efficiency. Cogent Education, 13(1), 2662138. https://doi.org/10.1080/2331186X.2026.2662138

Zhang, P., Gao, J., Liu, J., & Tan, L. (2025). EVMC: An Energy-Efficient Virtual Machine Consolidation Approach Based on Deep Q-Networks for Cloud Data Centers. Electronics, 14(19), 3813. https://doi.org/10.3390/electronics14193813

Zhang, Y., Zheng, Y., Yin, C., & Wang, W. (2025). Research and System Design of Digital Education Mechanism for Vocational Education in Cloud Computing Environment. Proceedings of the 2025 6th International Conference on Education, Knowledge and Information Management, 1(1), 519–524. https://doi.org/10.1145/3756580.3756665

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Published

2026-07-25