Implementation of Software Defined Networking (SDN) Technology in the Campus Network of Ichsan Sidenreng Rappang University
DOI:
https://doi.org/10.62872/hb72d069Keywords:
Software Defined Networking, Campus Network, Network Management, Network Security, QoSAbstract
The development of information technology and the digitalization of higher education demand a more efficient, flexible, and secure network infrastructure. Software Defined Networking (SDN) offers a new paradigm in network management by separating the control plane and data plane, enabling more centralized and adaptive network management. This study aims to analyze the implementation of SDN in campus networks, specifically at Ichsan Sidenreng Rappang University, and identify its benefits, challenges, and implementation strategies. The method used is a systematic literature review of 15 scientific publications from 2020-2025 that discuss the implementation of SDN in the context of campus networks. The results show that SDN provides significant network performance improvements, with a decrease in latency from 37.7 ms to 18 ms, jitter from 40.3 ms to 2.7 ms, and an increase in throughput from 95 Mbps to 98.2 Mbps compared to conventional networks. SDN also increases flexibility through centralized management and automation, strengthens security with adaptive firewall integration, and improves service redundancy and availability. Key implementation challenges include the need for human resource training, the development of comprehensive security policies, and testing on more complex topologies. This study concludes that implementing SDN on campus networks is strategic for supporting the digitalization of higher education, with recommendations for thorough planning, ongoing human resource training, and the development of policies that holistically integrate technical and security aspects.
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Al-Heety, O. S., Zakaria, Z., Ismail, M., Shakir, M. M., Alani, S., & Alsariera, H. (2020). A Comprehensive Survey: Benefits, Services, Recent Works, Challenges, Security, and Use Cases for SDN-VANET. IEEE Access, 8, 91028–91047. https://doi.org/10.1109/ACCESS.2020.2992580
Alnaim, A. K. (2024). Securing 5G virtual networks: A critical analysis of SDN, NFV, and network slicing security. International Journal of Information Security, 23(6), 3569–3589. https://doi.org/10.1007/s10207-024-00900-5
Amalia, R., Kalsum, T., & Riska, R. (2021). Analisis dan Implementasi Software Defined Networking (SDN) untuk Automasi Perangkat Jaringan. Infotek: Jurnal Informatika dan Teknologi. https://doi.org/10.29408/jit.v4i2.3734
Chanhemo, W., Mohsini, M., Mjahidi, M., & Rashidi, F. (2023). Deep learning for SDN-enabled campus networks: proposed solutions, challenges and future directions. International Journal of Intelligent Computing and Cybernetics, 16, 697-726. https://doi.org/10.1108/ijicc-12-2022-0312
Chen, M., Gu, Y., Zhang, Y., & Qu, Q. (2024). A Campus Local Area Network Architecture based on Software Defined Networking. 2024 Sixth International Conference on Next Generation Data-driven Networks (NGDN), 78-81. https://doi.org/10.1109/ngdn61651.2024.10744183
Espinel Sarmiento, D., Lebre, A., Nussbaum, L., & Chari, A. (2021). Decentralized SDN Control Plane for a Distributed Cloud-Edge Infrastructure: A Survey. IEEE Communications Surveys & Tutorials, 23(1), 256–281. https://doi.org/10.1109/COMST.2021.3050297
Fitrian, H., Adkia, A., Rahmadani, S., Kencana, R., & Fiddin, I. (2025). Analisis Peningkatan Kinerja Jaringan Melalui Reduksi Delay, Jitter, dan Peningkatan Throughput pada Infrastruktur Software-Defined Networking di Digitech University. Jurnal Nasional Komputasi dan Teknologi Informasi (JNKTI). https://doi.org/10.32672/jnkti.v8i1.8627
Gonzales, C., & Pitogo, V. (2024). Performance Analysis of Caraga State University's Network Infrastructure: A Software-defined Networking Approach. 2024 4th International Conference of Science and Information Technology in Smart Administration (ICSINTESA), 396-401. https://doi.org/10.1109/icsintesa62455.2024.10747881
Hariyadi, I., Dharma, I., Azhar, R., & Suriyati, S. (2025). Implementasi Software-Defined Network Terintegrasi Firewall pada Proxmox untuk Pengontrolan Konfigurasi Jaringan dan Pengamanan Layanan Container. JTIM: Jurnal Teknologi Informasi dan Multimedia. https://doi.org/10.35746/jtim.v7i1.644
Mahdiyah, L., Ginting, J., & Iryani, N. (2021). Analisis Perbandingan Performansi Eksternal Border Gateway Protocol (EBGP) pada Jaringan Konvensional dan Jaringan Software Defined Network. RESISTOR (Elektronika Kendali Telekomunikasi Tenaga Listrik Komputer). https://doi.org/10.24853/resistor.4.2.147-154
Manuputty, Y., & Widiasari, I. (2024). Analisis Performa Jaringan Software Defined Networking dengan Algoritma Random Early Detection. Jurnal JTIK (Jurnal Teknologi Informasi dan Komunikasi). https://doi.org/10.35870/jtik.v8i2.1745
Mensah, J., Abandoh-Sam, J., Amankwah, H., & Tchouchu, E. (2024). The Relevance of Development and Deployment of Software Defined Networking Solutions for a University Network. Indian Journal of Data Communication and Networking. https://doi.org/10.54105/ijdcn.c5034.04020224
Muwajihan, I., & Jatikusumo, D. (2021). Perancangan Jaringan Ethernet Link Dengan Menggunakan Teknologi Link Aggregation dan Auto Failover. IJCIT (Indonesian Journal on Computer and Information Technology). https://doi.org/10.31294/ijcit.v6i2.10866
Rischke, J., Gabriel, F., Pandi, S., Nguyen, G., Salah, H., & Fitzek, F. H. P. (2019). Improving Communication Reliability Efficiently: Adaptive Redundancy for RLNC in SDN. 2019 IEEE Conference on Network Softwarization (NetSoft), 291–295. https://doi.org/10.1109/NETSOFT.2019.8806682
Salim, E. (2023). Software-Defined Networking-Based Campus Networks Via Deep Reinforcement Learning Algorithms: The Case of University of Technology. International Journal on Recent and Innovation Trends in Computing and Communication. https://doi.org/10.17762/ijritcc.v11i10.8726
Saputra, H., & Dalimunthe, R. (2021). Implementasi Firewall pada Data Link Layer Menggunakan Arsitektur Software Defined Network. Jurnal Teknik Sistem Komputer dan Informatika, 7, 245-250. https://doi.org/10.33330/jurteksi.v7i3.1199
Shodiq, F., & Prihanto, A. (2021). Analisis Perbandingan Performansi Kontroler RYU Dan POX Berbasis Software Defined Network (SDN) Pada Routing OSPF. Journal of Informatics and Computer Science (JINACS). https://doi.org/10.26740/jinacs.v3n03.p216-223
Silalahi, E., Sitanggang, Y., Suryaningsih, E., & Kiswanto, D. (2025). Implementasi dan Analisis Protokol HSRP dan VRRP dalam Meningkatkan Redundansi Gateway pada Jaringan Virtual. Jurnal Informatika dan Teknik Elektro Terapan. https://doi.org/10.23960/jitet.v13i2.6474
Singla, N. (2024). Configuration of Complex Networking Using Secure Software Defined Network System. Communications on Applied Nonlinear Analysis. https://doi.org/10.52783/cana.v32.2409
Yaqin, M. (2020). Perancangan dan Implementasi Protokol Routing EBGP pada Software Defined Network Menggunakan ONOS Controller. Jurnal Teknologi Informasi, 6.
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