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首页> 外文期刊>Acta astronautica >A space-to-space microwave wireless power transmission experiential mission using small satellites
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A space-to-space microwave wireless power transmission experiential mission using small satellites

机译:使用小型卫星的空对空微波无线功率传输体验任务

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摘要

A space solar microwave power transfer system (SSMPTS) may represent a paradigm shift to how space missions in Earth orbit are designed. A SSMPTS may allow a smaller receiving surface to be utilized on the receiving craft due to the higher-density power transfer (compared to direct solar flux) from a SSMPTS supplier craft; the receiving system is also more efficient and requires less mass and volume. The SSMPTS approach also increases mission lifetime, as antenna systems do not degrade nearly as quickly as solar panels. The SSMPTS supplier craft (instead) can be replaced as its solar panels degrade, a mechanism for replacing panels can be utilized or the SSMPTS can be maneuvered closer to a subset of consumer spacecraft. SSMPTS can also be utilized to supply power to spacecraft in eclipse and to supply variable amounts of power, based on current mission needs, to power the craft or augment other power systems. A minimal level of orbital demonstrations of SSP technologies have occurred. A mission is planned to demonstrate and characterize the efficacy of space-to-space microwave wireless power transfer. This paper presents an overview of this prospective mission. It then discusses the spacecraft system (comprised of an ESPA/SmallSat-class spacecraft and a 1-U CubeSat), launch options, mission operations and the process of evaluating mission outcomes.
机译:太空太阳微波功率传输系统(SSMPTS)可能代表着如何设计地球轨道太空任务的模式转变。由于来自SSMPTS供应商工艺的密度更高的功率传输(与直接太阳通量相比),SSMPTS可以允许在接收工艺器上使用较小的接收表面;接收系统也更加高效,并且需要更少的质量和体积。 SSMPTS方法还可以延长任务寿命,因为天线系统的退化速度不及太阳能电池板。 SSMPTS供应商的飞船(代替)可以随着太阳能电池板的退化而更换,可以利用更换电池板的机制,也可以将SSMPTS操纵得更靠近消费航天器的一部分。 SSMPTS还可以用于在日食时向航天器供电,并根据当前任务需要提供可变数量的功率,以为飞船供电或扩充其他动力系统。 SSP技术的轨道展示很少。计划执行一项任务,以演示和表征空对空微波无线电力传输的功效。本文概述了这一预期任务。然后讨论了航天器系统(由ESPA / SmallSat级航天器和1-U立方体卫星组成),发射选择,任务运行以及评估任务结果的过程。

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