Pbe-CC: Congestion Control via Endpoint-Centric, Physical-Layer Bandwidth Measurements
Yaxiong Xie, Fan Yi, Kyle Jamieson
摘要
Cellular networks are becoming ever more sophisticated and overcrowded, imposing the most delay, jitter, and throughput damage to end-to-end network flows in today's internet. We therefore argue for fine-grained mobile endpoint-based wireless measurements to inform a precise congestion control algorithm through a well-defined API to the mobile's cellular physical layer. Our proposed congestion control algorithm is based on Physical-Layer Bandwidth measurements taken at the Endpoint (PBE-CC), and captures the latest 5G New Radio innovations that increase wireless capacity, yet create abrupt rises and falls in available wireless capacity that the PBE-CC sender can react to precisely and rapidly. We implement a proof-of-concept prototype of the PBE measurement module on software-defined radios and the PBE sender and receiver in C. An extensive performance evaluation compares PBE-CC head to head against the cellular-aware and wireless-oblivious congestion control protocols proposed in the research community and in deployment, in mobile and static mobile scenarios, and over busy and idle networks. Results show 6.3% higher average throughput than BBR, while simultaneously reducing 95th percentile delay by 1.8x.
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。
引用它的顶会 Paper12
- Vivisecting mobility management in 5G cellular networksAhmad Hassan, Arvind Narayanan, Anlan Zhang, Wei Ye 等SIGCOMM 2022 · 被引用 92 次
- Channel-Aware 5G RAN Slicing with Customizable SchedulersYongzhou Chen, Ruihao Yao, Haitham Hassanieh, Radhika MittalNSDI 2023 · 被引用 52 次
- A nationwide study on cellular reliability: measurement, analysis, and enhancementsYang Li, Hao Lin, Zhenhua Li, Yunhao Liu 等SIGCOMM 2021 · 被引用 44 次
- Toward formally verifying congestion control behaviorVenkat Arun, Mina Tahmasbi Arashloo, Ahmed Saeed, Mohammad Alizadeh 等SIGCOMM 2021 · 被引用 31 次
- FSA: fronthaul slicing architecture for 5G using dataplane programmable switchesNishant Budhdev, Raj Joshi, Pravein Govindan Kannan, Mun Choon Chan 等MobiCom 2021 · 被引用 16 次
相关 Paper
- Synchronizing with the Scheduler: Dual-Loop Congestion Control for 5G Uplink on Commodity DevicesQiang Wu, Yuxin Liu, Tianyang Zhang, Haoran Wan 等SIGCOMM 2026
- César: Cellular Resource Scheduling-Aware Congestion ControlJuhun Shin, Goodsol Lee, Jeongyeup Paek, Saewoong BahkINFOCOM 2025 · 被引用 2 次
- ABC: A Simple Explicit Congestion Controller for Wireless NetworksPrateesh Goyal, Anup Agarwal, Ravi Netravali, Mohammad Alizadeh 等NSDI 2020 · 被引用 101 次
- ECLAT: An ECN Marking System for Latency Guarantee in Cellular NetworksJunseon Kim, Youngbin Im, Kyunghan LeeINFOCOM 2021 · 被引用 4 次
- Forewarned is Forearmed: A Responsive Congestion Control with Non-intrusive Uplink Dynamics CaptureMu Wang, Yiying Lin, Shenghui Wei, Enhuan Dong 等SIGCOMM 2026
