论文标题
由SDN控制和精心策划的OPSquare DCN启用自动网络切片,并提供差异化的QoS供应
SDN-controlled and Orchestrated OPSquare DCN Enabling Automatic Network Slicing with Differentiated QoS Provisioning
论文作者
论文摘要
在这项工作中,我们提出并通过实验评估了由扩展的SDN控制平面控制和策划的光学OPSQuare DCN的自动和灵活的NSS配置,用于具有差异化QoS提供的多租户应用。已经开发了光流控制(OFC)协议是为了防止数据包内容引起的开关侧的数据包损失。基于数据平面的收集资源拓扑结构,可以动态地配置光网切片并由SDN控制平面自动重新配置。同时,实验结果验证了应用程序流的优先级分配为在包装丢失和传输延迟方面,将动态QoS性能提供给有特定要求的各种切片的QoS性能。此外,将数据平面的流量统计信息传播到SDN控制平面的能力使负载平衡算法的实现进一步改善了高QoS的网络性能。对于最高优先级,负载为0.5的网络,不能保证可以保证数据包丢失和小于4.8 US服务器到服务器的延迟。
In this work, we propose and experimentally assess the automatic and flexible NSs configurations of optical OPSquare DCN controlled and orchestrated by an extended SDN control plane for multi-tenant applications with differentiated QoS provisioning. Optical Flow Control (OFC) protocol has been developed to prevent packet losses at switch sides caused by packet contentions.Based on the collected resource topology of data plane, the optical network slices can be dynamically provisioned and automatically reconfigured by the SDN control plane. Meanwhile, experimental results validate that the priority assignment of application flows supplies dynamic QoS performance to various slices running applications with specific requirements in terms of packet loss and transmission latency. In addition, the capability of exposing traffic statistics information of data plane to SDN control plane enables the implementation of load balancing algorithms further improving the network performance with high QoS. No packet loss and less than 4.8 us server-to-server latency can be guaranteed for the sliced network with highest priority at a load of 0.5.