Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server

The digitization of user services has increased, in line with the need for VPS and cloud computing services, which are rampant among application and platform developers. Quite a few companies that create applications or application users have servers to handle user needs. Testing is carried out usi...

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Main Authors: Tommi Alfian Armawan Sandi, Firmansyah Firmansyah, Ahmad Fauzi
Format: Article
Language:English
Published: Universitas Islam Negeri Sunan Kalijaga Yogyakarta 2024-01-01
Series:JISKA (Jurnal Informatika Sunan Kalijaga)
Subjects:
Online Access:https://ejournal.uin-suka.ac.id/saintek/JISKA/article/view/4244
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author Tommi Alfian Armawan Sandi
Firmansyah Firmansyah
Ahmad Fauzi
author_facet Tommi Alfian Armawan Sandi
Firmansyah Firmansyah
Ahmad Fauzi
author_sort Tommi Alfian Armawan Sandi
collection DOAJ
description The digitization of user services has increased, in line with the need for VPS and cloud computing services, which are rampant among application and platform developers. Quite a few companies that create applications or application users have servers to handle user needs. Testing is carried out using the ICMP Protocol to get real-time results and can be measured. From Scenario 1, carrying out 20 test requests, we get a packet loss of 5% with RTT Avarage of 195,838ms and Mdev 4,103ms. If you apply DNS failover in scenario 2, the client will likely access the web a little slower, as evidenced by the packet loss being 25% greater in value. Compared to scenario 1, having a high standard deviation (Mdev) of round-trip times is not desirable. This variation is also known as jitter. Increased jitter can cause a bad user experience, especially in real-time audio and video streaming applications. However, this is still understandable because it only has a 1-5 second effect on the service. Next, in scenario 3, we can see that private and public servers have relatively high gab with 0% packet loss, which has a small Mdev value of 0.309ms. Therefore, the DNS failover method is a solution for network administrators who have problems related to server migration between public servers and private servers so that services can run even if a server is maintaining or downlinking.
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spelling doaj.art-152db477665748bfa95e1d2dca68853f2024-02-01T13:49:17ZengUniversitas Islam Negeri Sunan Kalijaga YogyakartaJISKA (Jurnal Informatika Sunan Kalijaga)2527-58362528-00742024-01-0191Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public ServerTommi Alfian Armawan Sandi0Firmansyah Firmansyah1Ahmad Fauzi2Universitas Bina Sarana InformatikaUniversitas Bina Sarana InformatikaUniversitas Nusa Mandiri The digitization of user services has increased, in line with the need for VPS and cloud computing services, which are rampant among application and platform developers. Quite a few companies that create applications or application users have servers to handle user needs. Testing is carried out using the ICMP Protocol to get real-time results and can be measured. From Scenario 1, carrying out 20 test requests, we get a packet loss of 5% with RTT Avarage of 195,838ms and Mdev 4,103ms. If you apply DNS failover in scenario 2, the client will likely access the web a little slower, as evidenced by the packet loss being 25% greater in value. Compared to scenario 1, having a high standard deviation (Mdev) of round-trip times is not desirable. This variation is also known as jitter. Increased jitter can cause a bad user experience, especially in real-time audio and video streaming applications. However, this is still understandable because it only has a 1-5 second effect on the service. Next, in scenario 3, we can see that private and public servers have relatively high gab with 0% packet loss, which has a small Mdev value of 0.309ms. Therefore, the DNS failover method is a solution for network administrators who have problems related to server migration between public servers and private servers so that services can run even if a server is maintaining or downlinking. https://ejournal.uin-suka.ac.id/saintek/JISKA/article/view/4244Server RedundancyDNS FailoverRTTMdevPrivate ServerPublic Server
spellingShingle Tommi Alfian Armawan Sandi
Firmansyah Firmansyah
Ahmad Fauzi
Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
JISKA (Jurnal Informatika Sunan Kalijaga)
Server Redundancy
DNS Failover
RTT
Mdev
Private Server
Public Server
title Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
title_full Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
title_fullStr Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
title_full_unstemmed Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
title_short Server Redundancy: Performa Jaringan Mengunakan DNS Failover MikroTik pada Kasus Private Server dan Public Server
title_sort server redundancy performa jaringan mengunakan dns failover mikrotik pada kasus private server dan public server
topic Server Redundancy
DNS Failover
RTT
Mdev
Private Server
Public Server
url https://ejournal.uin-suka.ac.id/saintek/JISKA/article/view/4244
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AT ahmadfauzi serverredundancyperformajaringanmengunakandnsfailovermikrotikpadakasusprivateserverdanpublicserver