Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method

Drag-free control is the key technology for space gravitational wave detection, which will be completed by miniature thruster. 2 cm Electron Cyclotron Resonance Ion Thruster (ECRIT) may be used for the drag-free control. Therefore, the 3D PIC method is used to estimate the thrust regulation of 2 cm...

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Format: Article
Language:zho
Published: The Northwestern Polytechnical University 2020-08-01
Series:Xibei Gongye Daxue Xuebao
Subjects:
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2020/04/jnwpu2020384p733/jnwpu2020384p733.html
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spelling doaj-d28a4292a620451c9b305a0b691a49e92021-05-03T01:01:29ZzhoThe Northwestern Polytechnical UniversityXibei Gongye Daxue Xuebao1000-27582609-71252020-08-0138473373910.1051/jnwpu/20203840733jnwpu2020384p733Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method01234School of Astronautics, Northwestern Polytechnical UniversitySchool of Astronautics, Northwestern Polytechnical UniversitySchool of Astronautics, Northwestern Polytechnical UniversitySchool of Power Science and Engineering, Harbin Institute of TechnologySchool of Power Science and Engineering, Harbin Institute of TechnologyDrag-free control is the key technology for space gravitational wave detection, which will be completed by miniature thruster. 2 cm Electron Cyclotron Resonance Ion Thruster (ECRIT) may be used for the drag-free control. Therefore, the 3D PIC method is used to estimate the thrust regulation of 2 cm ECRIT through simulating the property of ion extracting from the double-grid system. Through analyzing the thrust performance and grid focusing property under different grid apertures, the better grid structure is selected for the subsequent calculation. On this basis, the influence of grid voltage and the ion density on the performance of the thruster is analyzed. The result shows that reducing grid aperture can reduce the thrust, but it also affects the focusing property of the grid. Changing the ion density can adjust the thrust in a wide range. At given grid structure and ion density, there is a suitable grid accelerating voltage range to ensure the best ion focus characteristics. Considering the thrust performance and focusing characteristics, the grid structure with screen and accelerating grid aperture in 0.6 mm and 0.34 mm is selected. When the ion density is 1×1 017, 0.7×1 017, 0.4×1 017 and 0.2×1 017 m-3, the thrust can range from 5.05 to 141.44 μN through adjusting the grid accelerating voltage. This study can provide information for analyzing the possibility of the thruster application.https://www.jnwpu.org/articles/jnwpu/full_html/2020/04/jnwpu2020384p733/jnwpu2020384p733.htmldrag-free controlelectron cyclotron resonancebeam extractionpic numerical simulationthrust calculation
collection DOAJ
language zho
format Article
sources DOAJ
title Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
spellingShingle Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
Xibei Gongye Daxue Xuebao
drag-free control
electron cyclotron resonance
beam extraction
pic numerical simulation
thrust calculation
title_short Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
title_full Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
title_fullStr Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
title_full_unstemmed Calculation on 2 cm ECRIT Thrust Regulation Based on 3D PIC Numerical Simulation Method
title_sort calculation on 2 cm ecrit thrust regulation based on 3d pic numerical simulation method
publisher The Northwestern Polytechnical University
series Xibei Gongye Daxue Xuebao
issn 1000-2758
2609-7125
publishDate 2020-08-01
description Drag-free control is the key technology for space gravitational wave detection, which will be completed by miniature thruster. 2 cm Electron Cyclotron Resonance Ion Thruster (ECRIT) may be used for the drag-free control. Therefore, the 3D PIC method is used to estimate the thrust regulation of 2 cm ECRIT through simulating the property of ion extracting from the double-grid system. Through analyzing the thrust performance and grid focusing property under different grid apertures, the better grid structure is selected for the subsequent calculation. On this basis, the influence of grid voltage and the ion density on the performance of the thruster is analyzed. The result shows that reducing grid aperture can reduce the thrust, but it also affects the focusing property of the grid. Changing the ion density can adjust the thrust in a wide range. At given grid structure and ion density, there is a suitable grid accelerating voltage range to ensure the best ion focus characteristics. Considering the thrust performance and focusing characteristics, the grid structure with screen and accelerating grid aperture in 0.6 mm and 0.34 mm is selected. When the ion density is 1×1 017, 0.7×1 017, 0.4×1 017 and 0.2×1 017 m-3, the thrust can range from 5.05 to 141.44 μN through adjusting the grid accelerating voltage. This study can provide information for analyzing the possibility of the thruster application.
topic drag-free control
electron cyclotron resonance
beam extraction
pic numerical simulation
thrust calculation
url https://www.jnwpu.org/articles/jnwpu/full_html/2020/04/jnwpu2020384p733/jnwpu2020384p733.html
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