Analisis dan Implementasi Pengalihan Trafik Data (Failover) Akses Internet Pada Dua ISP
DOI:
https://doi.org/10.30865/klik.v4i3.1336Keywords:
Analysis; Performance; Internet Traffic Diversion; Congestion; SpeedAbstract
When accessing various traffic activities on the internet, you have to pay attention to a reliable and stable connection to avoid downtime problems. Downtime or failure to access the internet can have a very disruptive impact on users while accessing the internet network. Using two or more ISPs is the best solution to avoid interference from ISPs due to having backup paths from other ISPs. Failover is a mechanism for merging or redirecting internet data traffic if a technical problem occurs at one of the ISPs to maintain continuity and smooth internet access. Problems arise if the bandwidth on each internet line is different, on the internet line with the lowest bandwidth value there will be full traffic (overload/congestion) which results in users who are diverted to the internet line with congestion conditions will experience delays in accessing the website and run online applications. The problem in this research is that when the internet bandwidth of the ISP-1 line has a download speed of 205Mbps and the ISP-2 line has a download speed of 50Mbps, it will cause overload traffic (overload/congestion) on the ISP-2 line because the bandwidth is only 50Mbps. The aim of this research is to differentiate between load balance and traffic redirection (failover) where the performance results of previous research are with the performance of failover research on 2 ISPs with different download and upload bandwidth speeds. This research will discuss the analysis and implementation of data traffic redirection (failover) for internet access on two ISPs with simultaneous performance on both ISPs and failover on 2 ISPs with different download and upload bandwidth speeds
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References
A. Tantoni, M. T. A. Zaen, and L. Mutawalli, “Komparasi QoS Load Balancing Pada 4 Line Internet dengan Metode PCC, ECMP dan NTH,” J. Media Inform. Budidarma, vol. 6, no. 1, p. 110, 2022, doi: 10.30865/mib.v6i1.3436.
T. Rahman, E. Sulistianto, A. Sudibyo, S. Sumarna, and B. Wijonarko, “Per Connection Classifier Load Balancing dan Failover MikroTik pada Dua Line Internet,” JIKA (Jurnal Inform., vol. 5, no. 2, pp. 195–209, 2021, doi: 10.31000/jika.v5i2.4517.
M. Muzayyin and A. S. Fitrani, “Konfigurasi Load Balancing dan Failover Menggunakan Router Mikrotik Pada RT RW NET (Studi Kasus?: Dusun Klatakan Dayurejo),” in Procedia of Engineering and Life Science, 2022, vol. 2, no. 2. doi: 10.21070/pels.v2i2.1293.
Mikrotik.id, “Failover menggunakan Netwatch,” Mikrotik.id, 2021. https://citraweb.com/artikel/429/ (accessed Oct. 17, 2023).
baktikominfo.id, “Apa Sih Kecepatan Akses Internet Itu?,” baktikominfo.id, 2018. https://www.baktikominfo.id/en/informasi/pengetahuan/apa_sih_kecepatan_akses_internet_itu-584. 2018 (accessed Oct. 18, 2023).
Biznethome.net, “Kenali Apa Itu Mbps dan MBps Supaya Kamu Tidak Bingung,” biznethome.net, 2023. https://biznethome.net/blog/kenali-apa-itu-mbps-dan-mbps-supaya-kamu-tidak-bingung/ (accessed Oct. 15, 2023).
Mikrotik.id, “Setting Dasar Hotspot Mikrotik,” mikrotik.id, 2015. https://citraweb.com/artikel_lihat.php?id=125 (accessed Oct. 15, 2023).
Mikrotik.id, “Penggunaan Custom Chain pada Firewall MikroTik,” Mikrotik.id, 2015. https://citraweb.com/artikel/146/ (accessed Oct. 15, 2023).
mikrotik.id, “Implementasi Firewall Filter,” mikrotik.id, 2013. https://citraweb.com/artikel_lihat.php?id=57 (accessed Oct. 19, 2023).
Admin, “Tutorial Menggunakan Firewall di Mikrotik,” idn.id. https://www.idn.id/tutorial-menggunakan-firewall-di-mikrotik/ (accessed Dec. 13, 2023).
I. R. Perwira, B. M. Akbar, and H. Prapcoyo, Intrusion Detection and Prevention System dan Keamanan Jaringan Pada Mikrotik Router (Teori dan Praktek). Yogyakarta: Lembaga Penelitian & Pengabdian Kepada Masyarakat UPN “Veteran” Yogyakarta, 2020. [Online]. Available: https://eprints.upnyk.ac.id/31576/1/Buku IDPS Mikrotik.pdf
Mikrotik, “Firewall Basic Concepts,” help.mikrotik.com. https://help.mikrotik.com/docs/display/ROS/Mangle (accessed Dec. 14, 2023).
R. P. Ejzak, C. K. Florkey, and R. W. Hemmeter, “Network overload and congestion: A comparison of ISUP and SIP,” Bell Labs Tech. J., vol. 9, no. 3, pp. 173–182, 2004, doi: 10.1002/bltj.20049.
A. Abdullah, “Implementasi Teknik Load Balancing Dan Failover Dengan Metode ECMP Dalam Peningkatan Kualitas Layanan Jaringan,” J. Sains Komput. dan Teknol. Inf., vol. 3, no. 1, pp. 111–115, 2020.
I. A. Pratama, “Analisa Perbandingan Kinerja Load Balance PFsense dengan Load Balance Per Connection Classifier Pada Mikrotik Router,” J. Tek. Inform., vol. 14, no. 2, pp. 145–152, 2021.
I. Beni, A. S. Budiman, and E. Satryawati, “Uji Perbandingan Performa Metode Nth dan Metode PCC Dalam Implementasi Load Balancing dan Failover,” J. Teknol. Inf., vol. 8, no. 2, pp. 202–211, 2022, [Online]. Available: http://ejournal.urindo.ac.id/index.php/TI/article/view/2786
I. Rukmana and H. Suhendi, “Implementasi Load Balancing PCC dan Failover Netwatch Menggunakan Mikrotik di PT. Infomedia Nusamtara,” in E-PROSIDING TEKNIK INFORMATIKA, 2023, vol. 4, no. 1, pp. 164–176.
A. Jayadi and F. Sadamaputra, “Implementation of Failover on Mikrotik Router Using Check Gateway and Distance Parameters,” J. Secur. Comput. Information, Embed. Network, Intell. Syst., vol. 1, no. 2, pp. 36–43, 2023.
M. R. N. Hadi and E. R. Kaburuan, “Ethernet Link Network Design Using Auto Failover and Load Balancing Technology in Throughput Optimization,” J. Theor. Appl. Inf. Technol., vol. 100, no. 15, pp. 4641–4654, 2022.
J. E. Goldman and P. T. Rawles, Applied Data Communications, A business-Oriented Approach, Third Edit. John Wiley & Sons, 2000.
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