ICE-Based Custom Full-Mesh Network for the CHIME High Bandwidth Radio Astronomy Correlator

Author:

Bandura K.12,Cliche J. F.1,Dobbs M. A.13,Gilbert A. J.1,Ittah D.1,Mena Parra J.1,Smecher G.14

Affiliation:

1. Physics Department, McGill University, Montreal, Quebec H3A 2T8, Canada

2. LCSEE, West Virginia University, Morgantown, WV 26505, USA

3. Canadian Institute for Advanced Research, Toronto, Canada

4. Three-Speed Logic, Inc., Vancouver, Canada

Abstract

New generation radio interferometers encode signals from thousands of antenna feeds across large bandwidth. Channelizing and correlating this data requires networking capabilities that can handle unprecedented data rates with reasonable cost. The Canadian Hydrogen Intensity Mapping Experiment (CHIME) correlator processes 8-bits from [Formula: see text] digitizer inputs across 400[Formula: see text]MHz of bandwidth. Measured in [Formula: see text] bandwidth, it is the largest radio correlator that is currently commissioning. Its digital back-end must exchange and reorganize the 6.6[Formula: see text]terabit/s produced by its 128 digitizing and channelizing nodes, and feed it to the 256 graphics processing unit (GPU) node spatial correlator in a way that each node obtains data from all digitizer inputs but across a small fraction of the bandwidth (i.e. ‘corner-turn’). In order to maximize performance and reliability of the corner-turn system while minimizing cost, a custom networking solution has been implemented. The system makes use of Field Programmable Gate Array (FPGA) transceivers to implement direct, passive copper, full-mesh, high speed serial connections between sixteen circuit boards in a crate, to exchange data between crates, and to offload the data to a cluster of 256 GPU nodes using standard 10[Formula: see text]Gbit/s Ethernet links. The GPU nodes complete the corner-turn by combining data from all crates and then computing visibilities. Eye diagrams and frame error counters confirm error-free operation of the corner-turn network in both the currently operating CHIME Pathfinder telescope (a prototype for the full CHIME telescope) and a representative fraction of the full CHIME hardware providing an end-to-end system validation. An analysis of an equivalent corner-turn system built with Ethernet switches instead of custom passive data links is provided.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Instrumentation

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1. Updating the First CHIME/FRB Catalog of Fast Radio Bursts with Baseband Data;The Astrophysical Journal;2024-07-01

2. The Hydrogen Intensity Real-Time Analysis eXperiment: Overview and Status Update;2024 18th European Conference on Antennas and Propagation (EuCAP);2024-03-17

3. A 1024-channel Wideband Digital Subsystem Prototype for Large Aperture Array Radio Telescope;2023 IEEE/MTT-S International Microwave Symposium - IMS 2023;2023-06-11

4. Characterization of the John A. Galt telescope for radio holography with CHIME;Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI;2022-08-31

5. A graph database solution for tracking the deployment and layout of a large radio interferometer;Software and Cyberinfrastructure for Astronomy VII;2022-08-29

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