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Ka band umbrella reflectors for CubeSats: Revisiting optimal feed location and gain loss

机译:用于CubeSats的Ka带伞状反光杯:重新考虑最佳的进料位置和增益损失

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Developing compact deployable umbrella reflector antennas for CubeSats potentially enables several advanced applications requiring high antenna gain. The size and weight constraints imposed by the CubeSat standard makes a smaller number of gores attractive for CubeSat applications. This work revisits the determination of the optimum feed location and gain loss with an emphasis on a smaller number of gores. We review the underlying assumptions of previous approaches that analyzed umbrella reflectors with a large number of gores. Furthermore, this work provides a comparison with results through parametric tuning of feed position using Physical Optics (PO)-based diffraction analysis. Our results pinpoint the cases in which the previous approximations may not hold, necessitating parametric tuning of feed position for optimal gain. We also discuss the effects of feed taper on the RMS error and the optimal placement of the feed.
机译:开发用于CubeSat的紧凑型可展开式雨伞反射器天线有可能使一些需要高天线增益的高级应用成为可能。 CubeSat标准施加的大小和重量限制使少量的孔对CubeSat应用程序具有吸引力。这项工作重新讨论了确定最佳进料位置和增益损失的方法,重点是减少了戈尔的数量。我们回顾了以前的方法的基本假设,这些方法分析了带有大量孔的伞状反射器。此外,这项工作通过使用基于物理光学(PO)的衍射分析对进料位置进行了参数调整,与结果进行了比较。我们的结果指出了以前的近似值可能不成立的情况,因此有必要对进给位置进行参数调整以获得最佳增益。我们还将讨论进料锥度对RMS误差和进料最佳位置的影响。

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