Development and operational validation of a hybrid data acquisition and remote participation framework for the GAMMA 10/PDX tandem mirror

A hybrid data acquisition (DAQ) and remote participation framework has been developed for the tandem mirror GAMMA 10/PDX to support advanced confinement, boundary-plasma, and divertor-simulation studies. The system integrates a long-established CAMAC-based DAQ for core diagnostics with a complementary PXI-based platform that enables high-bandwidth measurements such as Doppler reflectometry, high-speed soft X-ray measurements, and gold neutral beam probe diagnostics. Stand-alone PC-based systems further provide spectroscopic, imaging, and probe measurements for divertor-simulation experiments. A unified timing scheme ensures shot-synchronized acquisition across all platforms. Operational performance was evaluated during the 2023 autumn campaign, in which 450 consecutive discharges were successfully recorded with a CAMAC transfer success rate of 100 % and a PXI waveform-loss rate of 0 %. Remote data access through the LABCOM system at NIFS enabled near-real-time monitoring of selected diagnostics, supporting multi-institutional collaboration. Metadata integration via the g10db system further enhanced data accessibility and facilitated coordinated analysis. Selected PXI diagnostic data were published to LABCOM within approximately 1 min after each discharge. The framework also provides a basis for initial data-driven applications, including initial machine-learning-assisted diagnostic inference. Future development will focus on full PXI migration, real-time metadata tagging, and expanded data-driven research capabilities.

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Publication Details

Journal
Fusion Engineering and Design
Published
2026-10-09
DOI
https://doi.org/10.1016/j.fusengdes.2026.116091
Primary Topic
Magnetic confinement fusion research
Type
article
Field-Weighted Citation Impact
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article

Development and operational validation of a hybrid data acquisition and remote participation framework for the GAMMA 10/PDX tandem mirror

Yui Nagano, M. Hirata, Haruhiko HIMURA, Yasunori WASHO et al.
Fusion Engineering and Design
Magnetic confinement fusion research
article

Development and operational validation of a hybrid data acquisition and remote participation framework for the GAMMA 10/PDX tandem mirror

Yui Nagano, M. Hirata, Haruhiko HIMURA, Yasunori WASHO, Masayuki Yoshikawa, Sakamoto Mizuki, Sugiyama Akihiko, Masaki Ohsuna, M. Emoto, Naomichi Ezumi, H. Nakanishi, Junko KOHAGURA, Yoriko SHIMA, Takuma Okamoto
article en

Abstract

A hybrid data acquisition (DAQ) and remote participation framework has been developed for the tandem mirror GAMMA 10/PDX to support advanced confinement, boundary-plasma, and divertor-simulation studies. The system integrates a long-established CAMAC-based DAQ for core diagnostics with a complementary PXI-based platform that enables high-bandwidth measurements such as Doppler reflectometry, high-speed soft X-ray measurements, and gold neutral beam probe diagnostics. Stand-alone PC-based systems further provide spectroscopic, imaging, and probe measurements for divertor-simulation experiments. A unified timing scheme ensures shot-synchronized acquisition across all platforms. Operational performance was evaluated during the 2023 autumn campaign, in which 450 consecutive discharges were successfully recorded with a CAMAC transfer success rate of 100 % and a PXI waveform-loss rate of 0 %. Remote data access through the LABCOM system at NIFS enabled near-real-time monitoring of selected diagnostics, supporting multi-institutional collaboration. Metadata integration via the g10db system further enhanced data accessibility and facilitated coordinated analysis. Selected PXI diagnostic data were published to LABCOM within approximately 1 min after each discharge. The framework also provides a basis for initial data-driven applications, including initial machine-learning-assisted diagnostic inference. Future development will focus on full PXI migration, real-time metadata tagging, and expanded data-driven research capabilities.

Fusion Engineering and DesignVol. 233
University of Tsukuba (JP), The Graduate University for Advanced Studies, SOKENDAI (JP), National Institute for Fusion Science (JP)
Openalex Percentile: Top 17%
Magnetic confinement fusion research
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