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An Adaptive Broadcast and Multicast Traffic Cutting Framework to Improve Ethernet Efficiency by SDN

机译:SDN提高以太网效率的自适应广播和组播流量削减框架

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In local area networks (LANs), Ethernet is a widely used layer-2 networking technology due to the low cost and self-configuring ability. It allows computers and switches to form a broadcast domain to exchange data, which means that many protocols built on Ethernet rely on sending data to every node. However, as the network grows, the efficiency of Ethernet degrades since the network is flooded with spam packets caused by broadcast. Even worse, traditional layer-2 switches do not well support multicast protocols but realize them by also broadcasting packets. To conquer these problems, the paper develops an Adaptive Broadcast and multicast traffic Cutting (ABC) framework based on software-defined networking (SDN). By taking two Ethernet protocols, ARP and IGMP, as examples, we show how to exploit SDN to restrain unnecessary traffic to improve Ethernet efficiency via our framework. With Mininet simulations, we verify that the ABC framework not only greatly reduces spam packets than legacy Ethernet but also saves controller overhead comparing with other SDN-based solutions. Moreover, we also implement the ABC framework on the campus network to demonstrate its practicability.
机译:在局域网(LAN)中,由于成本低和具有自配置功能,以太网是一种广泛使用的第2层网络技术。它允许计算机和交换机形成一个广播域来交换数据,这意味着许多基于以太网的协议都依赖于向每个节点发送数据。但是,随着网络的发展,由于网络中充满了由广播引起的垃圾邮件数据包,因此以太网的效率下降。更糟糕的是,传统的第2层交换机不能很好地支持多播协议,而是通过广播数据包来实现它们。为了解决这些问题,本文开发了一种基于软件定义网络(SDN)的自适应广播和多播流量削减(ABC)框架。以ARP和IGMP这两种以太网协议为例,我们展示了如何利用SDN来限制不必要的流量,从而通过我们的框架提高以太网效率。通过Mininet仿真,我们验证了ABC框架不仅比传统以太网大大减少了垃圾邮件包,而且与其他基于SDN的解决方案相比,还节省了控制器开销。此外,我们还在校园网络上实施了ABC框架以证明其实用性。

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