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A Scalable Correlator Architecture Based on Modular FPGA Hardware, Reuseable Gateware, and Data Packetization

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arxiv 0809.2266 v3 pith:6JA5NJJM submitted 2008-09-12 astro-ph

A Scalable Correlator Architecture Based on Modular FPGA Hardware, Reuseable Gateware, and Data Packetization

classification astro-ph
keywords processingsignalcorrelatorhardwareantennasarchitecturearraybandwidth
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A new generation of radio telescopes is achieving unprecedented levels of sensitivity and resolution, as well as increased agility and field-of-view, by employing high-performance digital signal processing hardware to phase and correlate large numbers of antennas. The computational demands of these imaging systems scale in proportion to BMN^2, where B is the signal bandwidth, M is the number of independent beams, and N is the number of antennas. The specifications of many new arrays lead to demands in excess of tens of PetaOps per second. To meet this challenge, we have developed a general purpose correlator architecture using standard 10-Gbit Ethernet switches to pass data between flexible hardware modules containing Field Programmable Gate Array (FPGA) chips. These chips are programmed using open-source signal processing libraries we have developed to be flexible, scalable, and chip-independent. This work reduces the time and cost of implementing a wide range of signal processing systems, with correlators foremost among them,and facilitates upgrading to new generations of processing technology. We present several correlator deployments, including a 16-antenna, 200-MHz bandwidth, 4-bit, full Stokes parameter application deployed on the Precision Array for Probing the Epoch of Reionization.

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Cited by 1 Pith paper

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  1. Breakthrough Listen's Automated Commensal Technosignature Survey with MeerKAT

    astro-ph.IM 2026-07 accept novelty 6.0

    BLUSE autonomously upchannelises MeerKAT F-engine data to ~1 Hz, forms 64 coherent beams per pointing, and has searched >1.2 million pointings for narrowband technosignatures since 2022.