In the Ethernet lossless Data Center Networks (DCNs) deployedwith Priority-based Flow Control (PFC), the head-of-line blocking problemis still difficult to prevent due to PFC triggering under burst trafficscenarios ev...In the Ethernet lossless Data Center Networks (DCNs) deployedwith Priority-based Flow Control (PFC), the head-of-line blocking problemis still difficult to prevent due to PFC triggering under burst trafficscenarios even with the existing congestion control solutions. To addressthe head-of-line blocking problem of PFC, we propose a new congestioncontrol mechanism. The key point of Congestion Control Using In-NetworkTelemetry for Lossless Datacenters (ICC) is to use In-Network Telemetry(INT) technology to obtain comprehensive congestion information, which isthen fed back to the sender to adjust the sending rate timely and accurately.It is possible to control congestion in time, converge to the target rate quickly,and maintain a near-zero queue length at the switch when using ICC. Weconducted Network Simulator-3 (NS-3) simulation experiments to test theICC’s performance. When compared to Congestion Control for Large-ScaleRDMA Deployments (DCQCN), TIMELY: RTT-based Congestion Controlfor the Datacenter (TIMELY), and Re-architecting Congestion Managementin Lossless Ethernet (PCN), ICC effectively reduces PFC pause messages andFlow Completion Time (FCT) by 47%, 56%, 34%, and 15.3×, 14.8×, and11.2×, respectively.展开更多
移动Ad hoc网络中应用方向性天线,在增加网络吞吐量的同时会产生队列头阻塞问题(head of lineblocking,HOL)。提出一种基于有向网络分配矢量包调度的多址接入协议(directional network allocation vector-based packets scheduling for ...移动Ad hoc网络中应用方向性天线,在增加网络吞吐量的同时会产生队列头阻塞问题(head of lineblocking,HOL)。提出一种基于有向网络分配矢量包调度的多址接入协议(directional network allocation vector-based packets scheduling for MAC protocol,DAPS),使用有向网络分配矢量(directional network allocation vector,DNAV)作为包调度的策略,将节点周边区域进行划分,在可用区域内选择理想目的数据包进行发送。利用OP-NET仿真软件对其进行了网络仿真,并在结果分析中验证了DAPS协议更适合网络拓扑结构的变化,且有效地解决了HOL问题和进一步提高了网络吞吐量。展开更多
基金supported by the National Natural Science Foundation of China (No.62102046,62072249,62072056)JinWang,YongjunRen,and Jinbin Hu receive the grant,and the URLs to the sponsors’websites are https://www.nsfc.gov.cn/.This work is also funded by the National Science Foundation of Hunan Province (No.2022JJ30618,2020JJ2029).
文摘In the Ethernet lossless Data Center Networks (DCNs) deployedwith Priority-based Flow Control (PFC), the head-of-line blocking problemis still difficult to prevent due to PFC triggering under burst trafficscenarios even with the existing congestion control solutions. To addressthe head-of-line blocking problem of PFC, we propose a new congestioncontrol mechanism. The key point of Congestion Control Using In-NetworkTelemetry for Lossless Datacenters (ICC) is to use In-Network Telemetry(INT) technology to obtain comprehensive congestion information, which isthen fed back to the sender to adjust the sending rate timely and accurately.It is possible to control congestion in time, converge to the target rate quickly,and maintain a near-zero queue length at the switch when using ICC. Weconducted Network Simulator-3 (NS-3) simulation experiments to test theICC’s performance. When compared to Congestion Control for Large-ScaleRDMA Deployments (DCQCN), TIMELY: RTT-based Congestion Controlfor the Datacenter (TIMELY), and Re-architecting Congestion Managementin Lossless Ethernet (PCN), ICC effectively reduces PFC pause messages andFlow Completion Time (FCT) by 47%, 56%, 34%, and 15.3×, 14.8×, and11.2×, respectively.
文摘移动Ad hoc网络中应用方向性天线,在增加网络吞吐量的同时会产生队列头阻塞问题(head of lineblocking,HOL)。提出一种基于有向网络分配矢量包调度的多址接入协议(directional network allocation vector-based packets scheduling for MAC protocol,DAPS),使用有向网络分配矢量(directional network allocation vector,DNAV)作为包调度的策略,将节点周边区域进行划分,在可用区域内选择理想目的数据包进行发送。利用OP-NET仿真软件对其进行了网络仿真,并在结果分析中验证了DAPS协议更适合网络拓扑结构的变化,且有效地解决了HOL问题和进一步提高了网络吞吐量。