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Prediction and optimization of thrust performance from plasma diagnostics in the inductively coupled plasma of an RF ion thruster.

Authors :
Li, Yueh-Heng
Chen, Yi-Chien
Liu, Sheng-Wen
Aslan, Alim Rüstem
Source :
Acta Astronautica. Jul2023, Vol. 208, p130-141. 12p.
Publication Year :
2023

Abstract

Ion thrusters have acquired extensive applications in the space industry with their advantages of high efficiency, high specific impulse, and long lifetime. To operate a radio-frequency (RF) ion thruster successfully, a high-frequency current must be generated to facilitate the discharge of inductively coupled plasma. In this study, with support of trial and error, it is discovered that the thrust performance of an RF ion thruster depends on not only the RF power but also on other critical parameters, such as the propellant flow rate, ion grids voltages, and RF input power. A surrogate model, namely – the Kriging model, is employed to simplify the estimation and optimization of thrust performance. The thrust and specific impulse are selected to be the crucial metrics for used Kriging models for categorizing all types of propulsions. On the basis of Kriging model simulations, the designed RF ion thruster can achieve a thrust of 1.9 mN, a specific impulse of 1649.5 s, and a thrust efficiency of 48% under a propellant flow rate of 4 sccm, grids' voltage difference of 2500 V, and an RF input power of 40 W. • Kriging model was to simplify the optimization of radio-frequency ion thrust performance. • Thrust performance of RIT depends on the radio-frequency power and other parameters. • The optimal RIT can achieve a thrust of 1.9 mN and a specific impulse of 1649.5 s. • The resulting thrust efficiency fulfills 48% under a propellant flow rate of 4 sccm. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00945765
Volume :
208
Database :
Academic Search Index
Journal :
Acta Astronautica
Publication Type :
Academic Journal
Accession number :
163551397
Full Text :
https://doi.org/10.1016/j.actaastro.2023.03.038