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
面向算力网络的多元化、多样化、高速化发展趋势以及数据中心网络架构的演进趋势,为解决飞速增长的高性能处理需求、数据存储和算力处理效率问题,在分析总结远端内存直接访问(Remote Direct Memory Access,RDMA)技术的基础上,研究了无...面向算力网络的多元化、多样化、高速化发展趋势以及数据中心网络架构的演进趋势,为解决飞速增长的高性能处理需求、数据存储和算力处理效率问题,在分析总结远端内存直接访问(Remote Direct Memory Access,RDMA)技术的基础上,研究了无损网络的优势应用场景,提出了无损网络组网技术策略,经实测验证,组网性能满足高性能场景需求。展开更多
无损压缩在遥感领域有极其重要的作用。该文提出一种基于感知器模型的遥感图像无损压缩编码方法,该方法利用感知器具有学习能力的特点,自适应地调整图像的预测系数,对遥感图像进行空间和谱间去相关,然后进行熵编码。实验表明,对于多波...无损压缩在遥感领域有极其重要的作用。该文提出一种基于感知器模型的遥感图像无损压缩编码方法,该方法利用感知器具有学习能力的特点,自适应地调整图像的预测系数,对遥感图像进行空间和谱间去相关,然后进行熵编码。实验表明,对于多波段的遥感图像,该方法的压缩效果明显优于无损JPEG(Joint of Picture Expert Group)最优预测模式。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.
文摘面向算力网络的多元化、多样化、高速化发展趋势以及数据中心网络架构的演进趋势,为解决飞速增长的高性能处理需求、数据存储和算力处理效率问题,在分析总结远端内存直接访问(Remote Direct Memory Access,RDMA)技术的基础上,研究了无损网络的优势应用场景,提出了无损网络组网技术策略,经实测验证,组网性能满足高性能场景需求。
文摘无损压缩在遥感领域有极其重要的作用。该文提出一种基于感知器模型的遥感图像无损压缩编码方法,该方法利用感知器具有学习能力的特点,自适应地调整图像的预测系数,对遥感图像进行空间和谱间去相关,然后进行熵编码。实验表明,对于多波段的遥感图像,该方法的压缩效果明显优于无损JPEG(Joint of Picture Expert Group)最优预测模式。