Conference Agenda
Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).
Please note that all times are shown in the time zone of the conference. The current conference time is: 2nd Sept 2026, 02:08:21am CEST
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Daily Overview |
Support: Jannik Finck
Use this slot to get together and discuss new ideas, new problems, collaborations, opportunities, and the likes.
Support: Jannik Finck
GPUs are Fast, You May be Not: Low-Level CUDA Optimisation for Strong Scaling
Forschungszentrum Jülich, Germany
An ANARI-Based Pipeline from ParaView to Unreal Engine, Enabled by JuSync for In-Situ HPC Visualization
1: Forschungszentrum Jülich GmbH, Germany; 2: Leibniz-Rechenzentrum; 3: Argonne National Laboratory
Flexibility Capabilities of the Power Consumption in Computing Platforms
1: Inria, France; 2: RTE, Paris
Runtime Adaptivity for CSE and Machine Learning with Charm4Py, CharmTyles, and CharmNumerics
University of Illinois Urbana-Champaign, United States of America
Dynamic resource management for MPI applications: a practical path to production
Barcelona Super Computer Center, Spain
Support: Jannik Finck
Concurrency-Aware Admission Control for Deadline-Constrained LLM Serving
1: Inria, France; 2: Argonne National Lab; 3: RIKEN
On the HPC Readiness of Vector Databases as AI Memory
1: University of Wisconsin Madison, United States of America; 2: Argonne National Lab, United States of America; 3: University of Chicago
Composite DB: An Ultra-Large Composite Molecular Database for Scalable Virtual Screening
1: Barcelona Supercomputing Center, Spain; 2: Nostrum Biodiscovery, Spain; 3: Institució Catalana de Recerca i Estudis Avançats (ICREA), Spain
SAGE-HPC: multiphysics and multifidelity HPC optimization
1: Inria, France; 2: Argonne National Laboratory, USA
The NCSA Center for Artificial Intelligence Innovations (CAII) and the new Quantum Programming Office
University of Illinois Urbana-Champaign, United States of America
Performance Prediction for Vector Databases on Shared Resources
Argonne National Laboratory, United States of America
Support: Frederick Löffel
Short talks:
Interoperability via programming interfaces (TTG, Chameleon), Thomas Herault, INRIA
Overview of Reconverse, Ritvik Rao, Illinois
Interoperability between tasking models, David Alvarez, BSC
Task Interoperability for Extreme-Scale Runtime Systems
1: Inria, France; 2: University of Illinois at Urbana-Champaign; 3: Argonne National Laboratory; 4: Barcelona Supercomputing Center
Support: Frederick Löffel
Panel Discussion:
Memory Management, lead Olivier Aumage, INRIA
Task dependency techniques, lead Kale Laxmikant, Illinois
Standardization, lead Romain Pereira, ANL
Open discussion
Support: Frederick Löffel
Program:
- Project updates from Kazutomo Yoshii (ANL), Kentaro Sano (RIKEN), and Carlos Alvarez (BSC), see below
- "OmpSs@FPGA: An Open-Source Framework for FPGA Clusters", Antonio Filgueras (BSC)
- "Research on the CGRA Architecture for Supporting Predicated Execution", Tomohiro Ueno (RIKEN)
- "Chip Agent Demo: AI-Assisted Hardware Design and Verification", Connor Bohannon (ANL)
Heterogeneous and reconfigurable architectures for the future of computing
1: Argonne National Laboratory, United States of America; 2: RIKEN; 3: Barcelona Supercomputing Center
Support: Maria Anugerah
Program:
- 10:30 Intro (Franck)
- 10:40 Jordi - BSC: AI Factories (AIF) impact in HPC research groups
- 11:00 Emmanuel Jeannot - Inria: AI workflow management with UMRS
- 11:20 Franck - ANL: AI based Hypothesis Generation
- 11:40 Discussion
Full version here!
Support: Maria Anugerah
Dataflow and Workflow Characterization in Quantum-Classical Environments
1: Inria Rennes, France; 2: Barcelona Supercomputing Center, Spain; 3: Inria Saclay, France
Dynamic Resource Management for Malleable HPC–QC Workloads
Barcelona Super Computer Center, Spain
JUNIQ Benchmark Suite: Tracking Progress in Quantum Technology Readiness
Jülich Supercomputing Centre (JSC), Germany
JHPC-Quantum project for QC-HPC hybrid computing with on-premises Quantum Computers
RIKEN R-CCS, Japan
Design of Identity and Access Control for the Quantum–HPC Hybrid Platform
1: RIKEN R-CCS; 2: University of Tsukuba; 3: Juntendo University
Support: Maria Anugerah
From a Shallow Quantum Core to Polytime Approximation Schemes: A Hybrid Quantum–HPC Workflow for Constrained Optimization
1: Volkswagen AG, Germany; 2: JSC, Forschungszentrum Jülich, Germany; 3: Department of Physics, RWTH Aachen, Germany
Hybrid Quantum-HPC Workflows for QUBO-Based Pattern Recognition at Future Particle Colliders
1: Jülich Forschungszentrum, Germany; 2: Deutsches Elektronen-Synchrotron DESY; 3: University of Bern
State-vector simulation of quantum computer on supercomputers
RIKEN, Japan
Simulating Hybrid DQC-HPC Workflows with Quantum Interconnects
Argonne National Laboratory, United States of America
Support: Maria Anugerah (Tour 3), Jannik Finck (Tour 4)
Tours will start at 12:30pm at the registration desk in the central library (main hall). Tours will end at JSC. Registration is required, seats are limited. Non-FZJ participants only.
07:45 departure: Hotel Motel One Aachen, Kapuzinergraben 6-10, 52062 Aachen
08:00 departure: Novotel Aachen City, Peterstraße 66, 52062 Aachen
08:00 departure: Hotel Ibis Marschiertor, Friedlandstraße 6-8, 52064 Aachen