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A Compact Low-level RF Control System for Advanced Concept Compact Electron Linear Accelerator

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arxiv 2502.10623 v2 pith:2GCPJWLW submitted 2025-02-15 physics.acc-ph astro-ph.IM

classification physics.acc-phastro-ph.IM
keywords llrfcompactsystemaccelcontrolprototypebeenaccelerator
verification ladder T0 review T1 audit T2 compute T3 formal
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A compact low-level RF (LLRF) control system based on RF system-on-chip (RFSoC) technology has been designed for the Advanced Concept Compact Electron Linear-accelerator (ACCEL) program, which has challenging requirements in both RF performance and size, weight and power consumption (SWaP). The compact LLRF solution employs the direct RF sampling technique of RFSoC, which samples the RF signals directly without any analogue up and down conversion. Compared with the conventional heterodyne based architecture used for LLRF system of linear accelerator (LINAC), the elimination of analogue mixers can significantly reduce the size and weight of the system, especially with LINAC requires a larger number of RF channels. Based on the requirements of ACCEL, a prototype LLRF platform has been developed, and the control schemes have been proposed. The prototype LLRF system demonstrated magnitude and phase fluctuation levels below 1% and 1 degree, on the flat top of a 2 microseconds RF pulse. The LLRF control schemes proposed for ACCEL are implemented with a prototype hardware platform. This paper will introduce the new compact LLRF solution and summarize a selection of experimental test results of the prototype itself and with the accelerating structure cavities designed for ACCEL.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Next Generation LLRF Control and Monitoring System for S-Band Linear Accelerators

    physics.acc-ph 2025-05 conditional novelty 4.0 of 10

    A direct-sampling RFSoC-based low-level RF system achieved S-band pulse-to-pulse phase jitter as low as 19 femtoseconds in loopback tests and measured S-band accelerating cavity signals at high power.

  2. High Precision RF Pulse Shaping with Direct RF Sampling for Future Linear Accelerators

    physics.acc-ph 2025-05 conditional novelty 4.0 of 10

    A direct RF-sampling LLRF system generated square, pulsed, phase-reversed, and phase-ramped C-band RF pulses at megawatt power levels, including the rapid phase reversal used for SLED pulse compression.

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