期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
可编程数据平面技术综述 被引量:5
1
作者 唐鑫新 曾学文 +1 位作者 凌致远 宋磊 《电信科学》 2023年第4期1-16,共16页
在软件定义网络中,可编程数据平面提供的编程能力是网络功能虚拟化的基石。可编程数据平面技术的核心是可编程能力与数据包处理性能。首先从数据平面的可编程性出发,探讨现有数据平面的数据包处理抽象。然后,分别对数据平面实施的目标... 在软件定义网络中,可编程数据平面提供的编程能力是网络功能虚拟化的基石。可编程数据平面技术的核心是可编程能力与数据包处理性能。首先从数据平面的可编程性出发,探讨现有数据平面的数据包处理抽象。然后,分别对数据平面实施的目标平台与对应平台上的主要流表算法进行介绍,详细论述现有数据平面技术。最后,探讨了高性能数据平面技术存在的关键挑战。 展开更多
关键词 可编程数据平面 软件定义网络 网络功能虚拟化 高性能数据包处理
在线阅读 下载PDF
A High-Elasticity Router Architecture with Software Data Plane and Flow Switching Plane Separation 被引量:1
2
作者 GAO Xianming WANG Baosheng +1 位作者 ZHANG Xiaozhe MA Shicong 《China Communications》 SCIE CSCD 2016年第3期37-52,共16页
Routers have traditionally been architected as two elements: forwarding plane and control plane through For CES or other protocols. Each forwarding plane aggregates a fixed amount of computing, memory, and network int... Routers have traditionally been architected as two elements: forwarding plane and control plane through For CES or other protocols. Each forwarding plane aggregates a fixed amount of computing, memory, and network interface resources to forward packets. Unfortunately, the tight coupling of packet-processing tasks with network interfaces has severely restricted service innovation and hardware upgrade. In this context, we explore the insightful prospect of functional separation in forwarding plane to propose a next-generation router architecture, which, if realized, can provide promises both for various packet-processing tasks and for flexible deployment while solving concerns related to the above problems. Thus, we put forward an alternative construction in which functional resources within a forwarding plane are disaggregated. A forwarding plane is instead separated into two planes: software data plane(SDP) and flow switching plane(FSP), and each plane can be viewed as a collection of "building blocks". SDP is responsible for packet-processing tasks without its expansibility restricted with the amount and kinds of network interfaces. FSP is in charge of packet receiving/transmitting tasks and can incrementally add switching elements, such as general switches, or even specialized switches, to provide network interfaces for SDP. Besides, our proposed router architecture uses network fabrics to achievethe best connectivity among building blocks,which can support for network topology reconfiguration within one device.At last,we make an experiment on our platform in terms of bandwidth utilization rate,configuration delay,system throughput and execution time. 展开更多
关键词 router architecture forwarding plane functional separation packet-processing task packet receiving/transmitting task network fabric
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部