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AggreFlow: Achieving Power Efficiency, Load Balancing, and Quality of Service in Data Center Networks

机译:Eggreflow:在数据中心网络中实现电力效率,负载平衡和服务质量

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Power-efficient Data Center Networks (DCNs) have been proposed to save power of DCNs using OpenFlow. In these DCNs, the OpenFlow controller adaptively turns on/off links and OpenFlow switches to form a minimum-power subnet that satisfies the traffic demand. As the subnet changes, flows are dynamically routed and rerouted to the routes composed of active switches and links. However, existing flow scheduling schemes could cause undesired results: (1) power inefficiency: due to unbalanced traffic allocation on active routes, extra switches and links may be activated to cater to bursty traffic surges on congested routes, and (2) Quality of Service (QoS) fluctuation: because of the limited flow entry processing ability, switches may not be able to timely install/delete/update flow entries to properly route/reroute flows. In this paper, we propose AggreFlow, a dynamic flow scheduling scheme that achieves power efficiency and QoS improvement using three techniques: Flow-set Routing, Lazy Rerouting, and Adaptive Rerouting. Flow-set Routing achieves load balancing with a small number of flow entry operations by routing flows in a coarse-grained flow-set fashion. Lazy Rerouting spreads rerouting operations over a relatively long period of time, reducing the burstiness of entry operation on switches. Adaptive Rerouting selectively reroutes flow-sets to maintain load balancing. We built an NS3 based fat-tree network simulation platform to evaluate AggreFlow's performance. The simulation results show that AggreFlow reduces power consumption by about 18%, yet achieving load balancing and improved QoS (low packet loss rate and reducing the number of processing entries for flow scheduling by 98%), compared with baseline schemes.
机译:已经提出了高效的数据中心网络(DCN)使用OpenFlow节省DCN的电量。在这些DCN中,OpenFlow控制器自适应地打开/关闭链路和OpenFlow开关,以形成满足流量需求的最小功率子网。随着子网的变化,流量被动态路由并重新排出到由活动开关和链接组成的路由。但是,现有的流量调度方案可能导致不期望的结果:(1)功率低效率:由于活动路由上的流量分配,可能激活额外的交换机和链接,以满足拥挤路线上的交通浪涌,以及(2)服务质量(QoS)波动:由于流入处理能力有限,交换机可能无法及时安装/删除/更新流条目以正确路由/重新路由流。在本文中,我们提出了一种动态流量调度方案,一种使用三种技术实现功率效率和QoS改进:流量设置路由,延迟重新路由和自适应重新路由。流量路由通过以粗粒流量集时的流量路由流程实现负载平衡。懒惰的重新路由在相对较长的时间内传播了重新排出的操作,从而降低了交换机上进入操作的突破。自适应REROUTING选择性地重新排出流量以保持负载平衡。我们构建了一个基于NS3的脂肪树网络仿真平台,可评估骨光的性能。仿真结果表明,与基线方案相比,Eggreflow将功耗降低约18%,但实现负载平衡和改进的QoS(低丢包率并降低流量调度的处理条目的数量)。

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