Albert Gran Alcoz

dblp:263/3687 · DBLP profile ↗
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5ranked-venue papers
4as first author
4since 2021 · last 2025
0000-0003-2246-9486ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 5 · 4 first-author · 4 since 2021
YearPublicationVenuePosition
2025 Everything Matters in Programmable Packet Scheduling
Albert Gran Alcoz, Balázs Vass, Pooria Namyar, Behnaz Arzani, Gábor Rétvári, Laurent Vanbever
NSDI1
2024 Principles for Internet Congestion Management
abstract
Given the technical flaws with---and the increasing non-observance of---the TCP-friendliness paradigm, we must rethink how the Internet should manage bandwidth allocation. We explore this question from first principles, but remain within the constraints of the Internet's current architecture and commercial arrangements. We propose a new framework, Recursive Congestion Shares (RCS), that provides bandwidth allocations independent of which congestion control algorithms flows use but consistent with the Internet's economics. We show that RCS achieves this goal using game-theoretic calculations and simulations as well as network emulation.
Lloyd Brown, Albert Gran Alcoz, Frank Cangialosi, Akshay Narayan 0001, Mohammad Alizadeh, Hari Balakrishnan, Eric J. Friedman, Ethan Katz-Bassett, Arvind Krishnamurthy, Michael Schapira, Scott Shenker
SIGCOMM2
2023 QVISOR: Virtualizing Packet Scheduling Policies
abstract
The concept of programmable packet scheduling has been recently introduced, enabling the programming of scheduling algorithms into existing data planes without requiring new hardware designs. Notably, several programmable schedulers have been proposed, which are capable of running directly on existing commodity switches. Unfortunately, though, their focus has been limited to single-tenant traffic scheduling: i.e., scheduling all incoming traffic following one single scheduling policy (e.g., pFabric to minimize flow completion times).
Albert Gran Alcoz, Laurent Vanbever
HotNets1
2022 Aggregate-based congestion control for pulse-wave DDoS defense
abstract
Pulse-wave DDoS attacks are a new type of volumetric attack formed by short, high-rate traffic pulses. Such attacks target the Achilles' heel of state-of-the-art DDoS defenses: their reaction time. By continuously adapting their attack vectors, pulse-wave attacks manage to render existing defenses ineffective.
Albert Gran Alcoz, Martin Strohmeier, Vincent Lenders, Laurent Vanbever
SIGCOMM1
2020 SP-PIFO: Approximating Push-In First-Out Behaviors using Strict-Priority Queues
Albert Gran Alcoz, Alexander Dietmüller, Laurent Vanbever
NSDI1