A Secured OpenFlow-Based Switch Architecture

Bao Ho, C. Pham-Quoc, T. N. Thinh, N. Thoai
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引用次数: 5

Abstract

In this paper, we propose a secured OpenFlow-based switch architecture. The architecture is a combination of OpenFlow Processing that routes packets according to the OpenFlow protocol and Security Processing that defends against network attacks. Therefore, the proposed switch can work not only as a OpenFlow-based forwarding device but also as a network protection system. We implement our prototype switch on a Xilinx Virtex 5 xc5vtx240t FPGA device. In this prototype version, we integrate two different DDoS countermeasure techniques, the Hop-Count filtering and Port Ingress/Egress filtering. The experimental results show that the switch achieves packet processing throughput by up to 19.7 Gbps while a 100% DDoS detection rate with up to a 2.9% false positive rate and a 0% false negative rate is obtained. Our prototype system uses up to 36% Look-Up Tables, 38% Registers, and 62% Block RAM of the FPGA device.
一种安全的基于openflow的交换机架构
在本文中,我们提出了一个安全的基于openflow的交换机架构。该体系结构是根据OpenFlow协议路由数据包的OpenFlow处理和防御网络攻击的安全处理的组合。因此,该交换机既可以作为基于openflow的转发设备,也可以作为网络保护系统。我们在Xilinx Virtex 5 xc5vtx240t FPGA器件上实现了我们的原型开关。在这个原型版本中,我们集成了两种不同的DDoS对抗技术,跳数过滤和端口入口/出口过滤。实验结果表明,该交换机的数据包处理吞吐量高达19.7 Gbps, DDoS检测率为100%,假阳性率为2.9%,假阴性率为0%。我们的原型系统使用高达36%的查找表,38%的寄存器和62%的FPGA设备块RAM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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