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NASA HERMeS Hall Thruster Electrical Configuration Characterization

机译:NASA HERMeS霍尔推力器电气配置特征

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The NASA Hall Effect Rocket with Magnetic Shielding (HERMeS) 12.5 kW Technology Demonstration Unit-1 (TDU-1) Hall thruster has been the subject of extensive technology maturation in preparation for development into a flight ready propulsion system. Part of the technology maturation was to test the TDU-1 thruster in several ground based electrical configurations to assess the thruster robustness and suitability to successful in-space operation. The ground based electrical configuration testing has recently been demonstrated as an important step in understanding and assessing how a Hall thruster may operate differently in-space compared to ground based testing, and to determine the best configuration to conduct development and qualification testing. This paper describes the electrical configuration testing of the HERMeS TDU-1 Hall thruster in NASA Glenn Research Center's Vacuum Facility 5. The three electrical configurations examined were 1) thruster body tied to facility ground, 2) thruster floating, and 3) thruster body electrically tied to cathode common. The HERMeS TDU-1 Hall thruster was also configured with two different exit plane boundary conditions, dielectric and conducting, to examine the influence on the electrical configuration characterization.
机译:美国宇航局具有电磁屏蔽功能的霍尔效应火箭(HERMeS)12.5 kW-1技术演示装置(TDU-1)霍尔推进器已成为广泛技术成熟的主题,为发展成为可飞行的推进系统做准备。技术成熟的一部分是在几种基于地面的电气配置中测试TDU-1推进器,以评估推进器的坚固性和对成功进行太空操作的适用性。最近已证明,基于地面的电气配置测试是理解和评估霍尔推力器与基于地面的测试相比在太空中可能如何以不同方式运行以及确定最佳配置以进行开发和资格测试的重要步骤。本文介绍了美国宇航局格伦研究中心真空设施5中的HERMeS TDU-1霍尔推进器的电气配置测试。所检查的三种电气配置为:1)推进器本体与设施地面相连; 2)推进器浮动; 3)推进器本体电气化绑在阴极上常见。 HERMeS TDU-1霍尔推力器还配置了两种不同的出口平面边界条件,即电介质和传导条件,以检查对电气结构特征的影响。

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