A Cloud-native Agile approach to cyber platform prototyping and integration for astronomy: the ENGAGE SKA case

Fuente: arXiv
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Autores principales: Barbosa, Domingos, Regateiro, Diogo, Barraca, João Paulo, Bartashevich, Dzianis, Bartolini, Marco, di Carlo, Matteo, Harding, Piers, Maia, Dalmiro, Morgado, Bruno, Nunes, Domingos, Ribeiro, Bruno, Coelho, Bruno, Ribeiro, Valério, Almeida Jr, Allan K. de, Vaillant, Timothée, Yilmaz, Uğur
Formato: Preprint
Publicado: 2025
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author Barbosa, Domingos
Regateiro, Diogo
Barraca, João Paulo
Bartashevich, Dzianis
Bartolini, Marco
di Carlo, Matteo
Harding, Piers
Maia, Dalmiro
Morgado, Bruno
Nunes, Domingos
Ribeiro, Bruno
Coelho, Bruno
Ribeiro, Valério
Almeida Jr, Allan K. de
Vaillant, Timothée
Yilmaz, Uğur
author_facet Barbosa, Domingos
Regateiro, Diogo
Barraca, João Paulo
Bartashevich, Dzianis
Bartolini, Marco
di Carlo, Matteo
Harding, Piers
Maia, Dalmiro
Morgado, Bruno
Nunes, Domingos
Ribeiro, Bruno
Coelho, Bruno
Ribeiro, Valério
Almeida Jr, Allan K. de
Vaillant, Timothée
Yilmaz, Uğur
contents The Square Kilometre Array (SKA) Observatory is gearing up the formal construction of its two radio interferometers in Australia and South Africa after the end of design and pre-construction phases. Agile methodologies, the Cloud native Computing technologies and the DevOps software ideas are influencing the design of compute infrastructures that will be key to reduce the operational costs of SKA while improving the control and monitoring of the SKA antennas and ancillary systems, Correlators, HPC facilities or related data centre tiered systems. These tools will likely include advanced power metering technologies and efficient distribution automation and Network Operation Centres (NOC). SKA will become the world's largest radio telescope and is expected to achieve its first science by 2026. To cope with this dimension and complexity, a key part of this distributed Observatory is the overall software control and monitoring system embodied in the Observatory Management and Control (OMC) and the Services Teams that requires specialized Agile Teams to assist in software and cyber infrastructure building using an Agile development environment that includes test automation, Continuous Integration, and Continuous Deployment. To manage such a large and distributed machine, the Agile approach was adopted for the core software package of the SKA Telescope aimed at scheduling observations, controlling their execution, monitoring the telescope status and ensuring scalability and reliability. Here, we report on the ENGAGE SKA ciberinfrastructure prototyping support to the SKA Agile Software Development Life Cycle (SDLC).
format Preprint
id arxiv_https___arxiv_org_abs_2502_04039
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Cloud-native Agile approach to cyber platform prototyping and integration for astronomy: the ENGAGE SKA case
Barbosa, Domingos
Regateiro, Diogo
Barraca, João Paulo
Bartashevich, Dzianis
Bartolini, Marco
di Carlo, Matteo
Harding, Piers
Maia, Dalmiro
Morgado, Bruno
Nunes, Domingos
Ribeiro, Bruno
Coelho, Bruno
Ribeiro, Valério
Almeida Jr, Allan K. de
Vaillant, Timothée
Yilmaz, Uğur
Instrumentation and Methods for Astrophysics
Systems and Control
Medical Physics
The Square Kilometre Array (SKA) Observatory is gearing up the formal construction of its two radio interferometers in Australia and South Africa after the end of design and pre-construction phases. Agile methodologies, the Cloud native Computing technologies and the DevOps software ideas are influencing the design of compute infrastructures that will be key to reduce the operational costs of SKA while improving the control and monitoring of the SKA antennas and ancillary systems, Correlators, HPC facilities or related data centre tiered systems. These tools will likely include advanced power metering technologies and efficient distribution automation and Network Operation Centres (NOC). SKA will become the world's largest radio telescope and is expected to achieve its first science by 2026. To cope with this dimension and complexity, a key part of this distributed Observatory is the overall software control and monitoring system embodied in the Observatory Management and Control (OMC) and the Services Teams that requires specialized Agile Teams to assist in software and cyber infrastructure building using an Agile development environment that includes test automation, Continuous Integration, and Continuous Deployment. To manage such a large and distributed machine, the Agile approach was adopted for the core software package of the SKA Telescope aimed at scheduling observations, controlling their execution, monitoring the telescope status and ensuring scalability and reliability. Here, we report on the ENGAGE SKA ciberinfrastructure prototyping support to the SKA Agile Software Development Life Cycle (SDLC).
title A Cloud-native Agile approach to cyber platform prototyping and integration for astronomy: the ENGAGE SKA case
topic Instrumentation and Methods for Astrophysics
Systems and Control
Medical Physics
url https://arxiv.org/abs/2502.04039