DOE OSTI · 3364624
Machine-Protection System for the PIP-II Linear Accelerator: Architecture and Data Processing Schemes
Abstract
PIP-II at Fermilab features a brand-new, 800 MeV leading-edge Linear Accelerator (Linac) that will enable the Fermilab complex to deliver more than a megawatt of beam power to the Long Base-line Neutrino Facility (LBNF), requiring a robust Machine Protection System (MPS) to prevent beam-induced damage to delicate cryomodules and vacuum components. Signals in various accelerator components, in both analog and digital format, are collected and processed to assest the operating conditions of the accelerator. In the situation a potential damage is foreseen, the beam permit signal will be drop. A critical element of this system is the fast Analog Machine Protection System, a high-bandwidth platform designed for real-time beam loss monitoring. The system utilizes a modular, FPGA-based architecture to digitize signals from beam-sensing devices, such as AC Current Transformers (ACCTs), non-invasive Ring Pickups (RPUs) and beam scrapers. To eliminate both high frequency as well as 60 Hz noise that might be picked up in the industrial environment, data processing schemes beyond regular digital filtering are planned and implemented.
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Wu, Jinyuan [Fermilab] (ORCID:0000000344329521), Warner, Arden [Fermilab], Eisch, Jonathan [Fermilab], Austin, Mark [Fermilab]. 2026-05-15. Machine-Protection System for the PIP-II Linear Accelerator: Architecture and Data Processing Schemes. https://www.osti.gov/biblio/3364624
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