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SIGCOMM'26: PReCCL
SIGCOMM'26: Characterizing Queuing and Flow Dynamics in the Starlink Network
SIGCOMM'26: Adaptive Photonic Switching Schedules for Collective Communication in Scale-up Domains
SIGCOMM'26: ZipCCL
SIGCOMM'26: A Disaggregated DPU Architecture for High-Performance and Cost-Efficient AI Clouds
SIGCOMM'26: Improving Evaluation of Heterogenous Congestion Control Algorithm Interactions
SIGCOMM'26: Interleaving Multiple Priority Queues for High Speed Programmable Scheduling
SIGCOMM'26: A Responsive Congestion Control with Non-intrusive Uplink Dynamics Capture
SIGCOMM'26: Credit-Guided Congestion Control on Wafer-Scale On-Chip Networks for Molecular Dynamics
SIGCOMM'26: A Programming Language for Silicon Photonics
SIGCOMM'26: Airtime-Aware Contention Control for Taming Tail Latency from Wi-Fi Frame Bursting
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Last Updated: September 18, 2026
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That's all the design of P square simple but effective we implement the P square CS on switch ... fabric perf measuring Nicholas scale up Thank you for the great talk um something that I keeps being on my mind is why um do you have any idea as to why they're Okay maybe I I'll ask one question um so does this aggregation introduce a new single point of failure compared So we can easily easily see the problem the packets leaving the system is is rank okay so let's compare this ... webc credit guided congestion control on wafer scale on chip
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