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December 5, 2025JACOW0 citationsOpen Access

Fermilab's controls development with virtual accelerator

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HPHanlet, PierrickPAPathak Abhishek

Key Points

  • Enhanced control systems using a digital twin approach streamline development processes at Fermilab.
  • Utilizing control systems with a digital twin, the project aims for $800 MeV$ protons at over $1 MW$ beam power.
  • The development integrates EPICS with digital twins to ensure efficient control system testing and operations.
  • This innovative method may enable better efficiency and performance in complex accelerator systems at Fermilab.

Abstract

Control Systems development is often the last thing considered when designing and building new equipment, e. g. a new detector or superconducting RF LINAC; however when the new equipment is installed, it is the first thing desired to be operational for testing. Due to frequent delays in building new equipment and project deadlines, control system development and testing is often curtailed. A way to alleviate this problem is to simulate the control system, though this will be challenging for complex systems. The Fermilab PIP-II (proton improvement plan - II) project is being constructed at Fermilab to deliver 800\, MeV protons of >1\, MW beam power to replace the present LINAC for the remainder of the existing accelerator complex. The new LINAC consists of a warm front end (WFE), 23 superconducting RF cryomodules (of 5 types), and a beam transfer line (BTL) to the existing complex. The accelerator physics group has a parallel project to create a digital twin (DT) of the PIP-II accelerator. We have coupled the EPICS controls to this DT and are developing both the DT and EPICS software in parallel. This will allow us to develop the EPICS software framework, the HMIs, sequences, high level physics applications, and other services for use in a fully functional control system. This presentation will detail the work that we have performed to date and show demonstrations of controlling and monitoring the status of the accelerator, as well as future plans for this work.

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Cite This Study

Pierrick et al. (2025) studied this question.

synapsesocial.com/papers/694023c82d562116f28fcc41https://doi.org/10.18429/jacow-icalepcs2025-wesv003
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