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Plasma Oscillation Effects on Nested Hall Thruster Operation and Stability

机译:血浆振荡对嵌套霍尔推进器操作和稳定性的影响

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High-power Hall thrusters capable of throughput on the order of 100 kW are currently under development, driven by more demanding mission profiles and rapid growth in on-orbit solar power generation capability. At these power levels the nested Hall thruster (NHT), a new design that concentrically packs multiple thrusters into a single body with a shared magnetic circuit, offers performance and logistical advantages over conventional single-channel Hall thrusters. An important area for risk reduction in NHT development is quantifying inter-channel coupling between discharge channels. This work presents time- and frequency-domain discharge current and voltage measurements paired with high-speed video of the X2, a 10-kW class dual channel NHT. Two "triads" of operating conditions at 150 V, 3.6 kW and 250 V, 8.6 kW were examined, including each channel in individual operation and both channels in joint operation. For both triads tested, dual-channel operation did not noticeably destabilize the discharge. Partial coupling of outer channel oscillations into the inner channel occurred at 150 V, though oscillation amplitudes did not change greatly. As a percentage of mean discharge current, RMS oscillations at 150 V increased from 8% to 13% on the inner channel and decreased from 10% to 8% on the outer channel from single- to dual-channel operation. At 250 V the RMS/mean level stayed steady at 13% on the inner channel and decreased from 7% to 6 % on the outer channel. The only mean discharge parameter noticeably affected was the cathode floating potential, which decreased in magnitude below ground with increased absolute cathode flow rate in dual-channel mode. Rotating spokes were detected on high-speed video across all X2 operating cases with wavelength 12-18 cm, and spoke velocity generally increased from single- to dual-channel operation.
机译:高功率霍尔推进员目前正在开发100千瓦的吞吐量,由更苛刻的使命概况和在轨道太阳能发电能力中的快速增长驱动。在这些功率级别,嵌套霍尔推进器(NHT),一种具有同心将多个推进器分成单个机身的新设计,具有共用磁路,提供传统的单通道霍尔推进器的性能和物流优势。 NHT开发的风险降低的一个重要领域是量化放电通道之间的通道间耦合。这项工作提供了与X2的高速视频配对的时间和频域放电电流和电压测量,10 kW类双通道NHT。在150 v,3.6 kW和250 v,8.6 kW的两个“三合唱”的操作条件下,包括各个操作中的每个通道以及联合操作中的两个通道。对于测试的两个测试,双通道操作并不明显使放电稳定下降。外部通道振荡进入内部通道的部分耦合发生在150 V,但振荡幅度没有大变化。作为平均放电电流的百分比,150V的升压振荡从内通道上的8%增加到8%至13%,从单个到单通道操作下降到外部通道的10%至8%。在250 v处,在内部通道上的13%稳定在13%处保持稳定,并在外部通道下降到7%至6%。显着影响的唯一平均放电参数是阴极浮动电位,其在下面的幅度下降,在双通道模式下的绝对阴极流速增加。在所有X2的高速视频上检测到旋转辐条,在所有X2操作箱中,波长为12-18厘米,并且辐条速度通常从单一到双通道操作增加。

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