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Mednarodni projekti vir: SICRIS

Plasma Exascale-Performance Simulations CoE – Pushing flagship plasma simulations codes to tackle exascale-enabled Grand Challenges via performance optimisation and codesign

Ključne besede
Flagship Plasma Simulations, Exascale, Extreme Scale, Extreme Data, Heterogeneous Systems, Co-design, EPI
Organizacije (1) , Raziskovalci (21)
0782  Univerza v Ljubljani, Fakulteta za strojništvo
št. Evidenčna št. Ime in priimek Razisk. področje Vloga Obdobje Štev. publikacijŠtev. publikacij
1.  23180  dr. Janez Benedičič  Konstruiranje  Raziskovalec  2023 - 2026  134 
2.  57495  Leon Bogdanović    Raziskovalec  2026 
3.  53102  dr. Matic Brank  Konstruiranje  Raziskovalec  2023 - 2026  35 
4.  53298  dr. Stefan Costea  Konstruiranje  Raziskovalec  2023 - 2026  107 
5.  21415  Metod Čuk  Konstruiranje  Raziskovalec  2025 - 2026  36 
6.  23289  dr. Ivan Demšar  Konstruiranje  Raziskovalec  2025 - 2026  72 
7.  59545  Aleš Durjava  Konstruiranje  Raziskovalec  2024 
8.  21174  dr. Aleksander Grm  Mehanika  Raziskovalec  2024 - 2026  78 
9.  32770  dr. Tadej Kanduč  Matematika  Raziskovalec  2024  68 
10.  12725  dr. Leon Kos  Konstruiranje  Vodja sodelujoče RO  2023 - 2026  317 
11.  30680  dr. Jernej Kovačič  Konstruiranje  Raziskovalec  2025 - 2026  275 
12.  32265  dr. Simon Kulovec  Konstruiranje  Raziskovalec  2026  96 
13.  37988  dr. Bor Mojškerc  Proizvodne tehnologije in sistemi  Raziskovalec  2023 - 2024  35 
14.  61543  Nermina Nuhanović  Konstruiranje  Raziskovalec  2026 
15.  58740  Luka Samsa  Konstruiranje  Raziskovalec  2023 - 2026  11 
16.  33069  dr. Pavel Tomšič  Konstruiranje  Raziskovalec  2026  78 
17.  51899  dr. Uroš Urbas  Konstruiranje  Raziskovalec  2026  28 
18.  52700  dr. Ivona Vasileska  Konstruiranje  Raziskovalec  2023 - 2026  59 
19.  25450  dr. Nikola Vukašinović  Konstruiranje  Raziskovalec  2024  245 
20.  61706  Blaž Zgonec  Konstruiranje  Raziskovalec  2025 - 2026 
21.  59570  Aljaž Žafran  Konstruiranje  Raziskovalec  2026 
Povzetek
Plasma science has been at the forefront of HPC for several decades, driving and at the same time benefiting greatly from innovative hardware and software developments. The overall goal of Plasma-PEPSC is to take this development to the next level, enabling scientific breakthroughs in plasma science Grand Challenges through exascale computing and extreme-scale data analytics. Specifically, we aim to enable unprecedented simulations on current pre-exascale and future exascale platforms in Europe to control plasma-material interfaces, optimize magnetically confined fusion plasmas, design next-generation plasma accelerators and predict space plasma dynamics in the Earth’s magnetosphere. We achieve these goals by maximizing the parallel performance and efficiency of four European flagship plasma codes with a large user base: BIT, GENE, PIConGPU, and Vlasiator. Here, we will build on algorithmic advances (regarding load balancing, resilience, and data compression) as well as on programming model and library developments (MPI, accelerator and data movement APIs and runtimes, in-situ data analysis). We ensure an integrated HPC software engineering approach for deploying, verifying, and validating extreme-scale kinetic plasma simulations that can serve as a community standard. We will establish a continuous and integrated co-design methodology to provide/receive direct input to/from the design and development of the EPI Processor and accelerator, will exploit synergies through collaborations with other CoEs, EuroHPC, and Competence Centers for cross-fertilization, adoption and full exploitation of the Plasma-PEPSC codes. Plasma-PEPSC brings together an exceptional, interdisciplinary group of highly-recognized leading scientists from academia, research centres, and HPC centres, with decades of experience in algorithmic and method developments, extreme-scale plasma simulations, and application optimizations with high involvement in strategic EuroHPC projects and initiatives.
Zgodovina ogledov
Priljubljeno