Causality detection in magnetic confined fusion plasma parameters
Bencze, Attila
Horváth, Virág
Berta, Miklós
Temesvári, Zsolt
Wührl, Tibor
Molnár, György
2026-07-27T11:43:53Z
2026-07-27T11:43:53Z
2022
http://hdl.handle.net/20.500.14044/39922
In this paper we introduce information theory-based transfer entropy method to analyse tokamak data,
specifically in connection to Edge Localised Mode instability. Using synthetic data, we first show how the transfer
entropy approach can be superior to linear methods, then we analyse actual experimental data measured by Li-
beam emission spectroscopy and by magnetic Mirnov-coils using information theoretical methods in order to
quantify the strength and the direction of causal relation between plasma measurement time recordings.
hu_HU
In this paper we introduce information theory-based transfer entropy method to analyse tokamak data,
specifically in connection to Edge Localised Mode instability. Using synthetic data, we first show how the transfer
entropy approach can be superior to linear methods, then we analyse actual experimental data measured by Li-
beam emission spectroscopy and by magnetic Mirnov-coils using information theoretical methods in order to
quantify the strength and the direction of causal relation between plasma measurement time recordings.
hu_HU
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Causality detection in magnetic confined fusion plasma parameters