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Plasma Perturbations in High-Speed Probing of Hall Thruster Discharge Chambers: Quantification and Mitigation

机译:霍尔推进器排放室高速探测中的等离子体扰动:量化和缓解

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An experimental investigation is presented to quantify the effect of high-speed probing on the plasma parameters inside the discharge chamber of a 6-kW Hall thruster. Understanding the nature of these perturbations is of significant interest given the importance of accurate plasma measurements for characterizing thruster operation. An array of diagnostics including a high-speed camera and embedded wall probes is employed to examine in real time the changes in electron temperature and plasma potential induced by inserting a high-speed reciprocating Langmuir probe into the discharge chamber. It is found that the perturbations onset when the scanning probe is downstream of the electron temperature peak, and that along channel centerline, the perturbations are best characterized as a downstream shift of plasma parameters by 15-20% the length of the discharge chamber. A parametric study is performed to investigate techniques to mitigate the observed probe perturbations including varying probe speed, probe location, and operating conditions. It is found that the perturbations largely disappear when the thruster is operated at low power and low discharge voltage. The results of this mitigation study are discussed in the context of recommended methods for generating unperturbed measurements of the discharge chamber plasma.
机译:进行了一项实验研究,以量化高速探测对6 kW霍尔推力器放电室内的等离子体参数的影响。鉴于准确的等离子体测量对于表征推进器的运行非常重要,因此了解这些扰动的性质非常重要。包括高速照相机和嵌入式壁式探头在内的一系列诊断程序可用于实时检查通过将高速往复式Langmuir探头插入放电室而引起的电子温度和等离子体电势的变化。发现当扫描探针位于电子温度峰值的下游时,扰动开始,并且沿着通道中心线,扰动最好地表征为等离子体参数向下游偏移放电室长度的15-20%。进行参数研究以研究减轻观察到的探针扰动的技术,包括变化的探针速度,探针位置和操作条件。发现当推进器在低功率和低放电电压下操作时,扰动在很大程度上消失。在产生放电室等离子体的无干扰测量的推荐方法的背景下讨论了此缓解研究的结果。

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