4.7 Article

Modeling of Processes in Plasma of Radio-Frequency Ion Injector with an Antenna Placed inside the Volume of Discharge Chamber

Journal

AEROSPACE
Volume 8, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/aerospace8080209

Keywords

radio-frequency ion injector; inner antenna; ion beam current; local plasma parameters

Funding

  1. Government of Russian Federation [075-15-2019-1894]

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The study examines the theoretical assessment of efficiency increase possibility for a radio-frequency ion injector using internal antennas, finding that the best characteristics can be obtained with a conical arrangement of turns which significantly reduces radio-frequency power consumption. Verification of the results through testing is planned for the future.
The work is devoted to the theoretical assessment of the efficiency increase possibility for the radio-frequency ion injector, which is designed for the contactless removal of space debris from near-earth orbit by using an antenna located inside the discharge chamber. Four internal antenna configurations and two external ones-end and side-are considered. Expected characteristics were estimated using an engineering mathematical model built in COMSOL Multiphysics using an approximate magnetohydrodynamic description of the charged particle behavior. According to the simulation results, the best characteristics can be obtained with an internal antenna with a conical arrangement of turns. Calculations showed that in some operating modes, such an antenna configuration makes it possible to halve the radio-frequency power consumption compared to the classical antenna located on the discharge chamber side surface. The performed theoretical study showed that the internal antenna can significantly increase the ion injector efficiency. In the future, verification of the obtained results by test is planned.

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