计算机科学
计算机网络
无损压缩
显式拥塞通知
排队
网络拥塞
负载平衡(电力)
负荷管理
主动队列管理
数据中心
网络数据包
流量控制(数据)
实时计算
有损压缩
数据传输
分组交换
以太网
排队论
调度(生产过程)
数据包丢失
传输(电信)
延迟(音频)
服务器
数据压缩
分布式计算
数据流图
传输控制协议
互联网
流量(数学)
绩效改进
能源消耗
缓冲区溢出
作者
Qi Shi,Fangxue Jiang,C. Y. Li,Huang Huang,Xiaocui Li,Wenzhi Cao,Limei Liu
标识
DOI:10.1109/tii.2025.3639439
摘要
To meet the high performance requirement of real time and critical applications in industrial Internet of Things, modern lossless ethernet data center networks (DCNs) deployed with remote direct memory access and priority-based flow control (PFC) are dedicated to delivering low latency and high bandwidth. However, existing load balancing schemes either lack sub-round-trip-time congestion sensing or fail to accurately detect and reroute flows that cause congestion in PFC-enabled lossless DCNs. Therefore, we propose LBoDSN, an in-network load balancing for lossless DCNs using direct switch notification (DSN) for fast congestion flow detection, to address above challenges. LBoDSN tracks the evolution of ingress queue lengths at destination switches to anticipate the initiation of PFC pause, precisely identifies congested flows before PFC pause, and then sends DSNs to source switches to perform rerouting. After rerouting, the congestion notification packet associated with the previous path is selectively discarded to improve transmission performance. Experiments under realistic workloads reveal that, LBoDSN outperforms CONGA by 13%–65%, and 25%–80% in average and tail Flow Completion Times (FCTs), respectively. Compared to ConWeave, LBoDSN achieves approximately 9% improvement in both average and tail FCTs, while reducing switch queue consumption for reordering.
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