Abstract:In recent years, the Internet became an important human need in the modern times. In 2019 the number of internet users in Indonesia reached 73.7% of the population as a whole and an increase of 8.9% from the previous year. In State Islamic High School Sidoarjo already provides internet services but existing bandwidth is not distributed evenly between ISP1 and ISP2. In this research, a Load balancing technique is carried out using the Per Connection Classifier (PCC) method. This method divides and classify the … Show more
“…Changes in response time can be seen from the resulting delay/latency time. This load balancing system does not add up two or more connection lines, but this load balancing system divides traffic based on the connection paths that are passed so that bandwidth is used in a balanced way and reduces overload when sending data packets [18].…”
One of the solutions to get a better quality of internet service is to utilize load balancing technology. We can use more than one different ISP (Internet Service Provider) which is then balanced with load balancing technology, where this technique is used to distribute the traffic load on two or more connection lines in a balanced way so that traffic can run optimally, maximizing throughput, minimizing response time. and avoid overload on any of the connection lines. This study aims to determine the comparison of Quality of Service load balancing with the PCC, ECMP and NTH methods on Mikrotik. The test method uses the web application www.speedtest.cbn.id, www.fast.com (1 connection), the results will show ping, download speed, upload speed, and monitoring from the Mikrotik router side. The research stages used the Network Development Life Cycle method, namely analysis, design, prototype simulation, implementation, monitoring and management. The results of the research are in the form of a performance comparison between load balancing on 2 internet lines using the PCC, ECMP and NTH methods on the proxy router. Based on the tests carried out as a whole the load balance using the ECMP method is superior and more reliable in terms of failover effects.
“…Changes in response time can be seen from the resulting delay/latency time. This load balancing system does not add up two or more connection lines, but this load balancing system divides traffic based on the connection paths that are passed so that bandwidth is used in a balanced way and reduces overload when sending data packets [18].…”
One of the solutions to get a better quality of internet service is to utilize load balancing technology. We can use more than one different ISP (Internet Service Provider) which is then balanced with load balancing technology, where this technique is used to distribute the traffic load on two or more connection lines in a balanced way so that traffic can run optimally, maximizing throughput, minimizing response time. and avoid overload on any of the connection lines. This study aims to determine the comparison of Quality of Service load balancing with the PCC, ECMP and NTH methods on Mikrotik. The test method uses the web application www.speedtest.cbn.id, www.fast.com (1 connection), the results will show ping, download speed, upload speed, and monitoring from the Mikrotik router side. The research stages used the Network Development Life Cycle method, namely analysis, design, prototype simulation, implementation, monitoring and management. The results of the research are in the form of a performance comparison between load balancing on 2 internet lines using the PCC, ECMP and NTH methods on the proxy router. Based on the tests carried out as a whole the load balance using the ECMP method is superior and more reliable in terms of failover effects.
“…For the next relevant data packet to be sent on the same gateway path as the previous data packet, Mikrotik will remember the gateway path that connection traffic first traveled through. (Octavriana, Joni, and Ibadillah 2021)…”
Section: Per Connection Classifier (Pcc)mentioning
When one connection fails, failover makes sure the connection is always available, and the hotspot server can make it simpler for customers to access the internet with a username and password. The loss of an internet connection, a slow connection, and output that is insufficient for your bandwidth are some common issues with the internet network. Managing hotspot servers is less of a worry for many schools and colleges, as they often just use one ISP (internet service provider) connection. The drawback of employing a single line ISP is that blended learning-based lectures will currently cease to exist if the ISP goes down. Therefore, the Mikrotik RB951Ui can do load balancing, failover, and hotspot server management. When using the Per Connection Classifier (PCC) method, which in this study was successful in overcoming the aforementioned issues, the internet connection became stable because the load was split between the two ISPs, and when the internet at one of the ISPs went down, there were still other connections that backed up. Additionally, there is a wifi hotspot management system that uses a username, password, and bandwidth restrictions for each user.
“…Performance from load balance is used to split the load into multiple paths (links). Load balancing is an important component in the distribution of computing technologies that attracts the attention of the world (Octavriana et al, 2021); (Devaraj et al, 2020). In this case, for example, bandwidth traffic entering from ISP-A and ISP-B gateways has long used online information systems, but there are often internet connection interruptions due to the large number of users.…”
An Internet Service Provider (ISP) is a company or entity that provides internet connection services and other related services. The complexity of distribution control from several ISPs causes problems, especially in the speed factor, which affects the costs that must be incurred by the company. Management company information is not only focused on price and speed, but also requires good security and data traffic management (Traffic Engineering/TE). One application that is able to meet these needs is Software Defined Wide Area Network (SD-WAN). SD-WAN is the latest technological network development paradigm overcoming the challenges that exist in network mechanisms in TE. The results of this study can be used as a comparison of several ISPs so that it can be known which one is better or which one to choose. Based on the results of the data analysis, the following conclusions were obtained: 1) As for the jitter problem in the performance of SD-WAN technology, it has advantages over ordinary conventional networks that do not use sdwan technology; 2) Regarding the delay/latency of internet service providers, SD-WAN has advantages over ordinary conventional networks and 3) With respect to packet loss, SD-WAN internet service providers have an advantage over ordinary conventional networks.
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