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Modelling Software-Defined Networking: Switch Design with Finite Buffer and Priority Queueing

机译:建模软件定义的网络:具有有限缓冲区和优先级排队的交换机设计

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Software Defined Networking (SDN) is a new network architecture that separates control plane and data plane. SDN switch models in the literature primarily use queueing theory in two distinct categories: (i) single shared buffer for control plane traffic and data plane traffic, and (ii) buffer with two priorities to isolate control plane and data plane traffic. Several research works have independently studied these two buffer sharing mechanism but do not address the tradeoffs between these two buffer sharing mechanisms. The evaluation shows that shared buffer requires approximately up to 85% higher delays to install the flow table entries in the switch and up to 82% extra buffer capacity compared with the priority queueing buffer.
机译:软件定义网络(SDN)是一种新的网络体系结构,将控制平面和数据平面分开。文献中的SDN交换机模型主要在两个不同的类别中使用排队理论:(i)用于控制平面流量和数据平面流量的单个共享缓冲区,以及(ii)具有两个优先级的缓冲区以隔离控制平面和数据平面流量。一些研究工作已经独立研究了这两种缓冲区共享机制,但是没有解决这两种缓冲区共享机制之间的折衷。评估显示,与优先级排队缓冲区相比,共享缓冲区在交换机中安装流表条目所需的延迟大约高出85%,而额外的缓冲区容量则高达82%。

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