论文标题

链接聚合控制协议(LACP)作为基于SDN网络中的链接冗余的综述,使用RYU-CONTROLLER

A Review of Link Aggregation Control Protocol (LACP) as a Link Redundancy in SDN Based Network Using Ryu-Controller

论文作者

Nurhadi, Ali Ibnun, K., Guntur Petrus B., Firdaus, Muhammad, Muhammad, Raditya

论文摘要

可靠的网络目前是电信网络的绝对要求。这与越来越多的用户需要与服务器连接可靠且不间断的连接。链接聚合是可用于提供可靠网络的技术之一。链接聚合系统将两个或多个链接组合到一个逻辑链接中,其特征在于使用单个IP地址。在主机和服务器之间的通信过程中,每当二手链接被打破或终止时,其他活动链接都可以作为冗余,以恢复该通信。该机制称为链接冗余。如果没有另一种指标连接或断开连接的链接状况的机制,这种机制将无法运行。该机制称为链接监视。此模拟中使用的链接监视是媒体独立接口(MII)。在此模拟中,我们使用RYU-CONTROLLER和MININET模拟器来测试基于链接聚合的SDN(软件定义网络)的可靠性。在模拟过程中,我们分析了故障转移性能以及链接聚合如何在每个来自不同源的链接上分布连接。从模拟中,我们确认了链接冗余,每个连接的数据速率在某种程度上都按预期工作。

A reliable network is an absolute requirement for telecommunication networks at this time. This is in line with the growing number of users who need a reliable and uninterrupted connection to the server. Link Aggregation is one of the techniques that can be used to provide a reliable network. Link Aggregation System combines two or more links into one logical link, which is characterized by the use of a single IP address. During the communication between host and server, whenever the used link is broken or terminated the other active link can act as redundancy to resume that communication. This mechanism is called link redundancy. This mechanism will not run without the existence of another mechanism that monitors the condition of the links, which is either connected or disconnected. That mechanism is called link monitoring. Link monitoring used in this simulation is the Media Independent Interface (MII). In this simulation, we used Ryu-Controller and mininet Simulator to test the reliability of Link Aggregation-based SDN (Software Defined Network). During the simulation, we analyzed failover performance and how the Link Aggregation distributes the connection across the links for every which comes from a different source. From the simulations, we confirmed that link redundancy, the same data rate for every connection, to some degree, worked as intended.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源