Simulasi Keamanan Jaringan pada DPDK OpenvSwitch Berbasis Network-Based Intrusion Detection System (NIDS)
DOI:
https://doi.org/10.35870/jtik.v7i3.845Keywords:
DPDK, OpenvSwitch, NIDS, Snort, Denial of Service, Network SecurityAbstract
Virtual networks in a virtualized server environment use Virtual Switches to interconnect network traffic on the Virtual Machine with the physical network. However, at this time attacks carried out by hackers often occur in physical and virtual server environments. Hacking on computer network security is often done by a group of people who want to penetrate the security of a system. This activity aims to find, obtain, change, and even delete information. Therefore the use of OpenvSwitch and the application of NIDS in it is very useful for virtual network security. In this study, a simulation was carried out to find out how big the percentage of NIDS success was in detecting DOS attacks directed at OpenvSwitch. From the results of this study, the percentage of success for Snort in detecting attacks in this test is around ± 75%.
Downloads
References
Antony, F. and Gustriansyah, R., 2021. Deteksi Serangan Denial of Service pada Internet of Things Menggunakan Finite-State Automata. MATRIK: Jurnal Manajemen, Teknik Informatika dan Rekayasa Komputer, 21(1), pp.43-52. DOI: https://doi.org/10.30812/matrik.v21i1.1078.
Iryani, N., Ramadhani, A.D. and Ramadhani, Q.P. 2021. Analisis Performansi Data Plane Development Kit Terhadap Open Virtual Switch pada Jaringan Virtual, JTERA (Jurnal Teknologi Rekayasa), 6(1), p. 93. DOI: https://doi.org/10.31544/jtera.v6.i1.2021.93-100.
Purba, W.W. and Efendi, R., 2020. Perancangan dan analisis sistem keamanan jaringan komputer menggunakan SNORT. AITI, 17(2), pp.143-158. DOI: https://doi.org/10.24246/aiti.v17i2.143-158.
Lowe, W., 2010. VMware Infrastructure 3 for Dummies. John Wiley & Sons.
Fachri, B. and Harahap, F.H., 2020. Simulasi Penggunaan Intrusion Detection System (IDS) Sebagai Keamanan Jaringan dan Komputer. Jurnal Media Informatika Budidarma, 4(2), pp.413-420. DOI: https://doi.org/10.30865/mib.v4i2.2037.
Rozi, F., 2021. ANALISIS SISTEM KEAMANAN JARINGAN MENGGUNAKAN METODEINTRUSION DETECTION SYSTEM (IDS), INTRUSION PREVENTION SYSTEM (IPS), DAN HONEYPOT (Skripsi, Universitas Yudharta).
OpenvSwitch. 2022. Open vSwitch, Release 2.17.90.
Dietrich, N. 2021. Snort 3.1.18.0 on Ubuntu 18 & 20 " Configuring a Full NIDS & SIEM.
ANam, M.K., Sudyana, D., Ulfah, A.N. and Lizarti, N., 2020. Optimalisasi Penggunaan VirtualBox Sebagai Virtual Computer Laboratory untuk Simulasi Jaringan dan Praktikum pada SMK Taruna Mandiri Pekanbaru. J-PEMAS-Jurnal Pengabdian Masyarakat, 1(2), pp.39-44.
Suwanto, R., Ruslianto, I. and Diponegoro, M., 2019. Implementasi intrusion prevention system (IPS) menggunakan snort dan IPTABLE pada monitoring jaringan lokal berbasis website. Coding Jurnal Komputer dan Aplikasi, 7(01). DOI: http://dx.doi.org/10.26418/coding.v7i01.32690.
Walad, I., 2020. Analisis Denial Of Service Attack Pada Sistem Keamanan Web (Skripsi, Universitas Sumatera Utara). Available at: http://repositori.usu.ac.id/handle/123456789/28240.
Sun, G., Li, W. and Wang, D., 2018. Performance Evaluation of DPDK Open vSwitch with Parallelization Feature on Multi-Core Platform. J. Commun., 13(Nocember), pp.685-690. DOI: https://doi.org/10.12720/jcm.13.11.685-690.
Fanani, G. and Riadi, I., 2020. Analysis of Digital Evidence on Denial of Service (DoS) Attack Log Based. Buletin Ilmiah Sarjana Teknik Elektro, 2(2), pp.70-74. DOI: https://doi.org/10.12928/biste.v2i2.1065.
Munawar, Z. and Putri, N.I., 2020. Keamanan Jaringan Komputer Pada Era Big Data. J-SIKA| Jurnal Sistem Informasi Karya Anak Bangsa, 2(01), pp.14-20.
Hafiz, A., Kurniawan, T., Sivi, N.A., Ikhsan, F.K. and Andhika, P., 2020. Analisis Celah Keamanan Jaringan Dan Server Menggunakan Snort Intrusion Detection System. Jurnal Informasi Dan Komputer, 8(2), pp.55-65. DOI: https://doi.org/10.35959/jik.v8i2.185.
Downloads
Published
Issue
Section
License
Copyright (c) 2023 Juan Tamalaki Ohyver, Dian W. Chandra

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Authors who publish with this journal agree to the following terms:
1. Copyright Retention and Open Access License
Authors retain copyright of their work and grant the journal non-exclusive right of first publication under the Creative Commons Attribution 4.0 International License (CC BY 4.0).
This license allows unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
2. Rights Granted Under CC BY 4.0
Under this license, readers are free to:
- Share — copy and redistribute the material in any medium or format
- Adapt — remix, transform, and build upon the material for any purpose, including commercial use
- No additional restrictions — the licensor cannot revoke these freedoms as long as license terms are followed
3. Attribution Requirements
All uses must include:
- Proper citation of the original work
- Link to the Creative Commons license
- Indication if changes were made to the original work
- No suggestion that the licensor endorses the user or their use
4. Additional Distribution Rights
Authors may:
- Deposit the published version in institutional repositories
- Share through academic social networks
- Include in books, monographs, or other publications
- Post on personal or institutional websites
Requirement: All additional distributions must maintain the CC BY 4.0 license and proper attribution.
5. Self-Archiving and Pre-Print Sharing
Authors are encouraged to:
- Share pre-prints and post-prints online
- Deposit in subject-specific repositories (e.g., arXiv, bioRxiv)
- Engage in scholarly communication throughout the publication process
6. Open Access Commitment
This journal provides immediate open access to all content, supporting the global exchange of knowledge without financial, legal, or technical barriers.
