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Advances in Scanning Reflectarray Antennas Based on Ferroelectric Thin Film Phase Shifters for Deep Space Communications

机译:基于铁电薄膜移相器的反射阵列天线在深空通信中的研究进展

摘要

Though there are a few examples of scanning phased array antennas that have flown successfully in space, the quest for low-cost, high-efficiency, large aperture microwave phased arrays continues. Fixed and mobile applications that may be part of a heterogeneous exploration communication architecture will benefit from the agile (rapid) beam steering and graceful degradation afforded by phased array antennas. The reflectarray promises greater efficiency and economy compared to directly-radiating varieties. Implementing a practical scanning version has proven elusive. The ferroelectric reflectarray, under development and described herein, involves phase shifters based on coupled microstrip patterned on Ba(x)Sr(1-x)TiO3 films, that were laser ablated onto LaAlO3 substrates. These devices outperform their semiconductor counterparts from X- through and K-band frequencies. There are special issues associated with the implementation of a scanning reflectarray antenna, especially one realized with thin film ferroelectric phase shifters. This paper will discuss these issues which include: relevance of phase shifter loss; modulo 2(pi) effects and phase shifter transient effects on bit error rate; scattering from the ground plane; presentation of a novel hybrid ferroelectric-semiconductor phase shifter; and the effect of mild radiation exposure on phase shifter performance.
机译:尽管有一些在空间上成功飞行的扫描相控阵天线的例子,但对低成本,高效率,大孔径微波相控阵的追求仍在继续。固定和移动应用(可能是异构探测通信体系结构的一部分)将从相控阵天线提供的敏捷(快速)波束控制和适度降级中受益。与直接辐射的品种相比,reflectarray具有更高的效率和经济性。事实证明,实施实用的扫描版本非常困难。正在开发和在此描述的铁电反射阵列涉及移相器,该移相器基于在Ba(x)Sr(1-x)TiO3膜上构图的耦合微带,并通过激光烧蚀到LaAlO3衬底上。这些器件在X频段和K频段上的性能均优于其半导体同类产品。扫描反射阵列天线的实现存在一些特殊问题,尤其是薄膜铁电移相器实现的问题。本文将讨论这些问题,包括:移相器损耗的相关性;模2(pi)效应和移相器瞬态效应对误码率的影响;从地平面散射;提出了一种新型混合铁电半导体移相器;以及轻度辐射对移相器性能的影响。

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    Romanofsky Robert R.;

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  • 年度 2007
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