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Inflatable antenna for CubeSat: A new spherical design for increased X-band gain

机译:用于CubeSat的充气天线:一种新的球形设计,可增加X波段增益

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Interplanetary CubeSats and small satellites have potential to provide means to explore space and to perform science in a more affordable way. As the goals for these spacecraft become more ambitious in space exploration, the communication systems currently implemented will need to be improved to support those missions. One of the bottlenecks is the antennas' size, due to the close relation between antenna gain and dimensions. Hence, a possible solution is to develop inflatable antennas which can be packaged efficiently, occupying a small amount of space, and they can provide, once deployed, large dish dimension and correspondent gain. A prototype of a 1 m inflatable antenna for X-Band has been developed in a joint effort between JPL and ASU. After initial photogrammetry tests and radiation tests, it was discovered that the design was not able to meet the required gain. As a result, a new design, based on a spherical inflatable membrane, is proposed. This new design will allow reaching a more stable inflatable surface, hence improving the electromagnetic performance. This paper will detail the principle challenges in developing this new antenna focusing on: design, EM analysis, fabrication and tests.
机译:行星际立方体卫星和小型卫星具有提供探索空间和以更实惠的方式进行科学的潜力。随着这些航天器的目标在太空探索中变得更加雄心勃勃,当前需要实施的通信系统将需要改进以支持这些任务。瓶颈之一是天线的尺寸,这归因于天线增益和尺寸之间的紧密关系。因此,一种可能的解决方案是开发可充气天线,其可被有效地包装,占据少量空间,并且一旦被部署,它们可提供大的碟形尺寸和相应的增益。 JPL和ASU共同开发了用于X波段的1 m充气天线的原型。在最初的摄影测量测试和辐射测试之后,发现该设计无法满足所需的增益。结果,提出了一种基于球形可充气膜的新设计。这种新的设计将允许到达更稳定的充气表面,从而改善电磁性能。本文将详细介绍开发这种新型天线的主要挑战,重点是:设计,电磁分析,制造和测试。

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