A custom interconnection multi-FPGA framework for distributed processing applications

Conference Paper (2022)
Author(s)

Carlos Salazar-García (Instituto Tecnologico de Costa Rica)

Alfonso Chacon-Rodriguez (Instituto Tecnologico de Costa Rica)

Renato Rfmolo-Donadfo (Instituto Tecnologico de Costa Rica)

Ronny García-Ramírez (Instituto Tecnologico de Costa Rica)

David Solorzano-Pacheco (Instituto Tecnologico de Costa Rica)

Jeferson Gonzalez-Gomez (Instituto Tecnologico de Costa Rica)

Christos Strydis (Erasmus MC)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1109/SBCCI55532.2022.9893238
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Publication Year
2022
Language
English
Affiliation
External organisation
ISBN (electronic)
9781665481281

Abstract

-The development of multi-FPGA systems focused on high-performance computing requires high-speed channels, low bandwidth overhead and latency. In this paper, we propose a multi-FPGA interconnection framework aimed at distributed processing applications. Our solution allows efficient communication between different processing elements distributed among the FPGAs. To evaluate our proposal, we built a multi-FPGA system composed of five Zynq ZC706 FPGA boards capable of hosting a diverse number of coprocessors distributed over our custom network. With an aggregate bandwidth of up to 25Gbps per FPGA board, the interconnection framework reaches a latency of only 200.36ns, one of the lowest reported in the lElectronics Engineering, iterature. Experimental results show a computational efficiency of 97.25 % with a sustained throughput of 21.4GFLOPS. Furthermore, the proposed network interconnection architecture is easily portable to the latest generation FPGAs. This makes the current proposal a competitive option for distributed processing in multi-FPGA systems.

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