激光持续脉冲等离子体推力器稳定性研究

yuhao zhan, Nanlei Li, Weijing Zhou
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引用次数: 0

摘要

随着微型卫星的快速发展和广泛应用,其在轨推进技术备受关注。激光持续脉冲等离子体推力器是一种新型的空间微推进技术。从样机设计制作、测试平台搭建入手,然后简要分析该技术的原理和特点,并着重对该技术的稳定性进行测试分析。在试验中设置了激光点火能量22.6mJ、112.2mJ、222.4mJ、放电电压2000V、1500V、1000V等不同的试验条件,从定量(放电电流、产生的元件脉冲)和定性(工质表面污染程度)两方面对样机的稳定性进行评价,并根据评价结果,简要分析原因,提出改进建议。为今后激光持续脉冲等离子体推力器技术的研究开发和改进提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on stability of laser-sustained pulsed plasma thruster
With the rapid development and widespread application of microsatellites,its on-orbit propulsion technology has attracted much attention.This article focuses on the Laser-sustained pulsed plasma thruster, a new space micropropulsion technology.Start with prototype design and production, and test platform construction, then briefly analyze the principle and characteristics of the technology, and focus on the stability of the technology to carry out test analysis. In the test set up different test conditionssuch as laser ignition energy 22.6mJ, 112.2mJ, 222.4mJ, discharge voltage 2000V, 1500V, 1000V, etc.Evaluate the stability of the prototype from two aspects: quantitative (discharge current, generated element impulse) and qualitative (surface contamination degree of working fluid),and based on the evaluation results, analyze the reasons briefly and put forward suggestions for improvement.to provide a basis for future Laser-sustained pulsed plasma thruster technology research and development and improvement.
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