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Evaluation of parallel processing control of virtual switch architecture on large-scale network

机译:大型网络中虚拟交换机架构的并行处理控制评估

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Power consumption of network (NW) equipment has been rapidly increasing; therefore it is necessary to build a resource-efficient NW. Router virtualization, which involves dynamically re-allocating virtual routers to physical resources as server virtualization, is becoming more common as a method of using NW equipment effectively and robustly. Edge routers which are gateways of core NWs should be virtualized because they have many functions and resources just as servers do. A metro NW is a wide area layer-2 aggregation NW that connects each user's residential gateway to edge routers. To achieve edge router virtualization, the metro NW must trace dynamic edge router re-allocation by changing the route of each Ethernet flow. Therefore, we previously proposed a virtual layer-2 switch architecture with scale-out control that can improve route control performance to trace dynamic virtual router re-allocation to use metro NW equipment effectively and robustly. The routes are controlled in parallel flow-by-flow on this architecture. When edge router failure occurs, the controller must change the routes of all flows passing through the failed edge router. On the other hand, load imbalance of this route change occurs among parallel processes. If we can distribute this load evenly, we can decrease resources for the controller deployed in advance. Therefore, in this paper we propose two re-allocation methods for allocating flows to parallel processes according to the virtual router re-allocation. We evaluated the methods through simulation and showed that they can evenly distribute load among parallel processes not only in large-scale metro NWs, but also in data center NWs, which have recently become an important type of large-scale layer-2 NW.
机译:网络(NW)设备的功耗一直在迅速增长;因此,有必要建立一个资源节约型的西北。路由器虚拟化作为服务器虚拟化,涉及到将虚拟路由器动态重新分配给物理资源,作为一种有效而强大地使用NW设备的方法,路由器虚拟化正变得越来越普遍。应该对作为核心NW网关的边缘路由器进行虚拟化,因为它们就像服务器一样具有许多功能和资源。城域NW是将每个用户的住宅网关连接到边缘路由器的广域第2层聚合NW。为了实现边缘路由器虚拟化,城域NW必须通过更改每个以太网流的路由来跟踪动态边缘路由器的重新分配。因此,我们先前提出了一种具有横向扩展控制的虚拟第2层交换机体系结构,该体系结构可以提高路由控制性能,以跟踪动态虚拟路由器的重新分配,从而有效,可靠地使用城域NW设备。在此体系结构上,以并行流的方式控制路由。当边缘路由器发生故障时,控制器必须更改通过有故障的边缘路由器的所有流的路由。另一方面,该路径改变的负载不平衡在并行过程之间发生。如果我们可以平均分配此负载,则可以减少预先部署的控制器的资源。因此,在本文中,我们提出了两种根据虚拟路由器的重新分配将流分配给并行进程的重新分配方法。我们通过仿真对这些方法进行了评估,结果表明,它们不仅可以在大型城域NW中而且可以在数据中心NW中并行地在并行进程之间平均分配负载,而这些近来已成为大规模第二层NW的重要类型。

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