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The 200 Gbps Challenge: Imagining HL-LHC analysis facilities

  • Alexander Held
  • , Sam Albin
  • , Garhan Attebury
  • , Kenneth Bloom
  • , Brian Bockelman
  • , Lincoln Bryant
  • , Kyungeon Choi
  • , Kyle Cranmer
  • , Peter Elmer
  • , Matthew Feickert
  • , Rob Gardner
  • , Lindsey Gray
  • , Fengping Hu
  • , David Lange
  • , Carl Lundstedt
  • , Peter Onyisi
  • , Jim Pivarski
  • , Oksana Shadura
  • , Nick Smith
  • , John Thiltges
  • Ben Tovar, Ilija Vukotic, Gordon Watts, Derek Weitzel, Andrew Wightman

Research output: Contribution to journalConference articlepeer-review

Abstract

The IRIS-HEP software institute, as a contributor to the broader HEP Python ecosystem, is developing scalable analysis infrastructure and software tools to address the upcoming HL-LHC computing challenges with new approaches and paradigms, driven by our vision of what HL-LHC analysis will require. The institute uses a “Grand Challenge” format, constructing a series of increasingly large, complex, and realistic exercises to show the vision of HL-LHC analysis. Recently, the focus has been demonstrating the IRIS-HEP analysis infrastructure at scale and evaluating technology readiness for production. As a part of the Analysis Grand Challenge activities, the institute executed a “200 Gbps Challenge”, aiming to show sustained data rates into the event processing of multiple analysis pipelines. The challenge integrated teams internal and external to the institute, including operations and facilities, analysis software tools, innovative data delivery and management services, and scalable analysis infrastructure. The challenge showcases the prototypes - including software, services, and facilities - built to process around 200 TB of data in both the CMS NanoAOD and ATLAS PHYSLITE data formats with test pipelines. The teams were able to sustain the 200 Gbps target across multiple pipelines. The pipelines focusing on event rate were able to process at over 30 MHz. These target rates are demanding; the activity revealed considerations for future testing at this scale and changes necessary for physicists to work at this scale in the future. The 200 Gbps Challenge has established a baseline on today’s facilities, setting the stage for the next exercise at twice the scale.

Original languageEnglish (US)
Article number01217
JournalEPJ Web of Conferences
Volume337
DOIs
StatePublished - Oct 7 2025
Event27th International Conference on Computing in High Energy and Nuclear Physics, CHEP 2024 - Krakow, Poland
Duration: Oct 19 2024Oct 25 2024

All Science Journal Classification (ASJC) codes

  • General Physics and Astronomy

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