Institutional Research Computing Capabilities in Australia: 2024

Fuente: arXiv
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Main Authors: Kitaeff, Slava, Betbeder-Matibet, Luc, Carroll, Jake, Giugni, Stephen, Abramson, David, Zaitseff, John, Walters, Sarah, Powell, David, Bording, Chris, Nguyen, Trung, Macoustra, Angus, Voisin, Fabien, Chen, Bowen, Hurley, Jarrod
Format: Preprint
Published: 2025
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author Kitaeff, Slava
Betbeder-Matibet, Luc
Carroll, Jake
Giugni, Stephen
Abramson, David
Zaitseff, John
Walters, Sarah
Powell, David
Bording, Chris
Nguyen, Trung
Macoustra, Angus
Voisin, Fabien
Chen, Bowen
Hurley, Jarrod
author_facet Kitaeff, Slava
Betbeder-Matibet, Luc
Carroll, Jake
Giugni, Stephen
Abramson, David
Zaitseff, John
Walters, Sarah
Powell, David
Bording, Chris
Nguyen, Trung
Macoustra, Angus
Voisin, Fabien
Chen, Bowen
Hurley, Jarrod
contents Institutional research computing infrastructure plays a vital role in Australia's research ecosystem, complementing and extending national facilities. This paper analyses research computing capabilities across Australian universities and organisations, showing how institutional systems support research excellence through local compute resources, specialised hardware, and cluster solutions. Our study finds that nearly 112,258 CPU cores and 2,241 GPUs serve over 6,000 researchers as essential bridges between desktops and national facilities, enabling workflows from development to large-scale computations. The estimated replacement value of this infrastructure is $144M AUD. Drawing on detailed data from multiple institutions, we identify key patterns in deployment, utilisation, and strategic alignment with research priorities. Institutional resources provide critical support for data-intensive projects, facilitate training and higher-degree student research, enable prototyping and development, and ensure data sovereignty compliance when required. The analysis shows how these facilities leverage national investments while addressing institution-specific needs that national systems cannot meet. We present evidence that strategic investment in institutional capabilities yields significant returns through greater research productivity, enhanced graduate training, and improved outcomes. The study offers insights for organisations planning computing strategies and highlights the importance of maintaining robust institutional resources alongside national facilities.
format Preprint
id arxiv_https___arxiv_org_abs_2509_17351
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Institutional Research Computing Capabilities in Australia: 2024
Kitaeff, Slava
Betbeder-Matibet, Luc
Carroll, Jake
Giugni, Stephen
Abramson, David
Zaitseff, John
Walters, Sarah
Powell, David
Bording, Chris
Nguyen, Trung
Macoustra, Angus
Voisin, Fabien
Chen, Bowen
Hurley, Jarrod
Distributed, Parallel, and Cluster Computing
Institutional research computing infrastructure plays a vital role in Australia's research ecosystem, complementing and extending national facilities. This paper analyses research computing capabilities across Australian universities and organisations, showing how institutional systems support research excellence through local compute resources, specialised hardware, and cluster solutions. Our study finds that nearly 112,258 CPU cores and 2,241 GPUs serve over 6,000 researchers as essential bridges between desktops and national facilities, enabling workflows from development to large-scale computations. The estimated replacement value of this infrastructure is $144M AUD. Drawing on detailed data from multiple institutions, we identify key patterns in deployment, utilisation, and strategic alignment with research priorities. Institutional resources provide critical support for data-intensive projects, facilitate training and higher-degree student research, enable prototyping and development, and ensure data sovereignty compliance when required. The analysis shows how these facilities leverage national investments while addressing institution-specific needs that national systems cannot meet. We present evidence that strategic investment in institutional capabilities yields significant returns through greater research productivity, enhanced graduate training, and improved outcomes. The study offers insights for organisations planning computing strategies and highlights the importance of maintaining robust institutional resources alongside national facilities.
title Institutional Research Computing Capabilities in Australia: 2024
topic Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2509.17351