High-Performance Computing for SKA Transient Search: Use of FPGA based Accelerators -- a brief review

This paper presents the High-Performance computing efforts with FPGA for the accelerated pulsar/transient search for the SKA. Case studies are presented from within SKA and pathfinder telescopes highlighting future opportunities. It reviews the scenario that has shifted from offline processing of th...

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Veröffentlicht in:arXiv.org 2023-01
Hauptverfasser: Aafreen, R, Abhishek, R, Ajithkumar, B, Vaidyanathan, Arunkumar M, Barve, Indrajit V, Bhattramakki, Sahana, Bhat, Shashank, Girish, B S, Ghalame, Atul, Gupta, Y, Hayatnagarkar, Harshal G, Kamini, P A, Karastergiou, A, Levin, L, Madhavi, S, Mekhala, M, Mickaliger, M, Mugundhan, V, Naidu, Arun, Oppermann, J, B Arul Pandian, Patra, N, Raghunathan, A, Roy, Jayanta, Sethi, Shiv, Shaw, Benjamin, Sherwin, K, Sinnen, O, Sinha, S K, Srivani, K S, Stappers, B, Subrahmanya, C R, Prabu, Thiagaraj, Vinutha, C, Wadadekar, Y G, Wang, Haomiao, Williams, C
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Sprache:eng
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Zusammenfassung:This paper presents the High-Performance computing efforts with FPGA for the accelerated pulsar/transient search for the SKA. Case studies are presented from within SKA and pathfinder telescopes highlighting future opportunities. It reviews the scenario that has shifted from offline processing of the radio telescope data to digitizing several hundreds/thousands of antenna outputs over huge bandwidths, forming several 100s of beams, and processing the data in the SKA real-time pulsar search pipelines. A brief account of the different architectures of the accelerators, primarily the new generation Field Programmable Gate Array-based accelerators, showing their critical roles to achieve high-performance computing and in handling the enormous data volume problems of the SKA is presented here. It also presents the power-performance efficiency of this emerging technology and presents potential future scenarios.
ISSN:2331-8422
DOI:10.48550/arxiv.2207.07054