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Design of free gap insulated power transmission systems for the space environment

机译:空间环境无间隙绝缘输电系统设计

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Current data show that local pressures and other conditions surrounding a spacecraft can be such that the insulating capability of a free gap is dominated by phenomena associated with the left side of the Paschen minimum rather than vacuum breakdown. Coupled with the need for large power-to-weight ratios and long, reliable station operating times, a transmission system which enables the free gap to be used is being explored. One area of possible improvement is to examine methods of shielding a stressed region from external sources detrimental to insulation while simultaneously being able to maintain as low a pressure as possible by means of high pumping conductance shields. Various shielding designs are currently being investigated.
机译:当前数据表明,航天器周围的局部压力和其他条件可能使得自由间隙的绝缘能力受与帕申最小值左侧相关的现象而不是真空破坏的支配。结合对大功率重量比和长而可靠的站运行时间的需求,正在探索一种能够使用自由间隙的传输系统。可能需要改进的一个领域是研究将受压区域与有害于绝缘的外部源隔离的方法,同时能够借助高泵送电导率屏蔽将压力保持在尽可能低的水平。目前正在研究各种屏蔽设计。

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