eXpressSFU: Toward Super-Scalable Video Conferencing with SmartNICs
Tuan Tran, S. M. H. Hosseini, Seyeon Kim, Kyunghan Lee, Nam Bui, Dirk Grunwald, Sangtae Ha
摘要
Video conferencing has emerged as a critical Internet application. Unlike video-on-demand services, high-quality video conferencing necessitates minimal latency, as media streams are generated, transmitted, processed, forwarded and received in real time. Our empirical analysis reveals that processing latency at the media server, particularly Selective Forwarding Units (SFUs), is the dominant barrier to scalability. Notably, cryptography, memory, and I/O operations account for approximately 79% of the media packet processing latency.
In this paper, we introduce eXpressSFU, a re-architected video conferencing system designed to significantly enhance scalability for large-scale and high-quality video conferences. By decoupling the fast-control and data planes from the slowcontrol plane, eXpressSFU accelerates the media packet processing pipeline through the use of emerging network technologies, such as Smart Network Interface Cards (SmartNICs). Experimental results show that our system reduces packet processing latency by a factor of 8. This improvement allows it to support 3× more concurrent users while cutting computational power consumption by up to 60%.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
它引用的顶会 Paper2
相关 Paper
- Scalable Video Conferencing Using SDN PrinciplesOliver Michel, Satadal Sengupta, Hyojoon Kim, Ravi Netravali 等SIGCOMM 2025 · 被引用 8 次
- DeepSFU: Scalable Deepfake Detection for Video ConferencingTuan Tran, Shirin Ebadi, S. M. H. Hosseini, Woongsub Shin 等SIGCOMM 2026
- Warehouse-scale video acceleration: co-design and deployment in the wildParthasarathy Ranganathan, Daniel Stodolsky, Jeff Calow, Jeremy Dorfman 等ASPLOS 2021 · 被引用 43 次
- NetFEC: In-network FEC Encoding Acceleration for Latency-sensitive Multimedia ApplicationsYi Qiao, Han Zhang, Jilong WangINFOCOM 2024 · 被引用 3 次
- Understanding Host Network Stack LatencyTianyu Zuo, Jaehyun Hwang, Ao Tang, Rachit Agarwal 等SIGCOMM 2026
