远程直接内存访问
计算机科学
网络拥塞
延迟(音频)
排队
吞吐量
计算机网络
带宽遏流
分布式计算
操作系统
网络数据包
无线
工程类
机械工程
电信
气体压缩机
作者
Xinghua Zhao,Junwei Liu,Jun Yao,Jilei Chen,Yajun Yang,Jun Xu
标识
DOI:10.1109/icct56141.2022.10073021
摘要
The development of datacenter applications leads to the need for high throughput and ultra-low latency from the network. Remote Direct Memory Access (RDMA), which is becoming prevalent in datacenter networks in recent years, is capable to provide ultra-low latency and high throughput with less CPU utilization. Congestion control is of great importance for RDMA for its lossless feature. Datacenter QCN (DCQCN) is the most commonly used congestion control mechanism and is deployed in large-scale datacenter networks. To ensure the stability and performance of DCQCN, a fluid model is essential. However, due to neglecting time variant factors in the queue dynamic, the existing fluid model is not precise enough. In this paper, we propose a time variant fluid model which can be more effective to evaluate the stability and performance of DCQCN. In this model, the variation of the queue delay and system cut-off frequency is considered. As a result, the non-monotonic stability behavior is eliminated and a more reasonable and accurate evaluation of the congestion control system is acquired.
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