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February 21, 2026Nuclear Engineering and Technology0 citationsOpen Access

Integration of EPICS-based Remote Control and Monitoring System for Modernization of KAHIF RFQ LLRF System

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SLSangbeen LeeDCDae-Sik ChangMKMin Wook Kim

Key Points

  • The aim is to modernize the LLRF system to improve operational efficiency and enable remote control capabilities.
  • Integrated hardware components including a signal generator and DAQ module into the EPICS environment.
  • Established remote control and monitoring of the LLRF system.
  • Enabled real-time data acquisition and archiving of RF waveforms.
  • Achieved a frequency resolution of 40 Hz and amplitude resolution of 0.04 dBm.
  • Enhanced operational stability and maintenance efficiency of the RFQ accelerator.
  • Facilitated better fault diagnosis through improved monitoring capabilities.

Abstract

This technical note describes the modernization of the Low-Level Radio Frequency (LLRF) system for the Radio Frequency Quadrupole (RFQ) accelerator at the Korea Atomic Energy Research Institute Heavy Ion Facility (KAHIF). The legacy LLRF system, operating at 25.95 MHz, relied on manual analog controls, which limited operational efficiency and made fault diagnosis difficult due to its opaque circuit configuration. To address these issues, we integrated key hardware components—including a signal generator, a data acquisition (DAQ) module, and an oscilloscope—into the EPICS (Experimental Physics and Industrial Control System) environment. The upgraded system enables precise remote control with a frequency resolution of 40 Hz and an amplitude resolution of 0.04 dBm. Furthermore, real-time monitoring and archiving of RF waveforms and power parameters have been realized, significantly enhancing the operational stability and maintenance efficiency of the RFQ accelerator.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69994b88873532290d01fbb0https://doi.org/10.1016/j.net.2026.104206
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