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A bare-photovoltaic tether for consumable-less and autonomous space propulsion and power generation

机译:用于消耗少和自主空间推进和发电的裸光托硝基

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摘要

State-of-the-art electrodynamic tethers reach a steady electric current by using a bare segment to capture electrons passively from the ambient plasma (anodic contact) and an active electron emitter or a tether segment coated with a low-work-function material (cathodic contact) to emit electrons back and close the electrical circuit. This work proposes to take advantage of recent developments on thin-film solar cells and insert a photovoltaic (pv) tether segment in between the anodic and the cathodic contacts. Since thin-film solar cells can be folded and manufactured with any desired length and the same cross-section dimensions as the bare segment, i.e. width and thickness around few centimeters and tens of microns, the resulting device is compact and preserves bare tether simplicity. Detailed analysis of the current and voltage profiles throughout the tether shows that the electrical power introduced by the pv-segment into the tether-plasma circuit improves the performance and makes them less dependent on ambient conditions. The pv-segment decreases considerably the tether-to-plasma bias at the cathodic contact, thus opening the possibility to emit substantial current while using consumable-less electron emitters like thermionic and electron field emitters. The pv-segment also favors the current collection by increasing the tether-to-plasma bias at the bare segment. Propulsion and power generation applications and alternative architectures of bare-pv tethers are briefly discussed.
机译:最先进的电动电动器通过使用裸露段达到稳定电流,以从环境等离子体(阳极接触)和有源电子发射器或有源电子发射器或用低功函数材料涂覆的系绳段(阴极接触)以发出电子回来并关闭电路。这项工作提出利用薄膜太阳能电池的最新发展,并在阳极和阴极接触之间插入光伏(PV)系绳区段。由于薄膜太阳能电池可以用任何所需的长度和与裸段相同的长度和与相同的横截面尺寸折叠和制造,即,即宽度和厚度大约几厘米且数十微米,所得到的装置紧凑,并保留裸露的系绳简单性。对整个系绳整个电流和电压分布的详细分析表明,PV段引入的电力进入系绳 - 等离子体电路提高了性能,使它们更依赖于环境条件。 PV段显着降低了阴极接触处的系绳偏压,从而打开在使用较低的电子发射器等热离子和电子场发射器等消耗电子发射器的同时发射大量电流的可能性。 PV段还通过增加裸段的系绳偏压来利用电流收集。简要讨论了推进和发电应用和裸PV系绳的替代架构。

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