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A Dual-Focus Reflector Antenna for Spaceborne SAR Systems With Digital Beamforming

机译:具有数字波束成形的星载SAR系统的双焦点反射天线

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Future spaceborne synthetic aperture radar (SAR) missions shall benefit from digital beamforming (DBF) techniques with the goal of generating high-resolution wide-swath imagery. The basic idea is to replace parts of the analog receiver hardware by digital components, increasing the flexibility of such systems. The limited transmit power rises the need of large antennas capable of electronically steering the antenna beam over a large angular domain. An innovative concept is the usage of large unfoldable mesh-reflector antennas in combination with digital feed arrays. An inherent problem of such systems is, that every feed element illuminates, after reflection from the main reflector, an essentially non-overlapping angular domain in the far field. In case of an element failure the radar system would be ‘blind’ in the specific direction. To circumvent costly redundant receiver hardware a new approach to increase the reliability of such systems has been studied. The approach is based on a so called defocused reflector which grants visibility of the complete angular domain under failure conditions. This article presents the electromagnetic considerations leading to the defocused reflector concept. The performance of the defocused reflector system is evaluated in comparison to a conventional parabolic reflector system, utilizing digital beamforming techniques.
机译:未来的星载合成孔径雷达(SAR)任务将受益于数字波束成形(DBF)技术,目的是生成高分辨率的宽幅影像。基本思想是用数字组件代替模拟接收机硬件的各个部分,从而增加了此类系统的灵活性。有限的发射功率引起了对大型天线的需求,该大型天线能够在较大的角域上电子控制天线波束。一个创新的概念是将大型可折叠的网状反射天线与数字馈源阵列结合使用。这种系统的固有问题是,每个馈电元件在从主反射器反射之后照亮远场中的基本上不重叠的角域。万一发生元件故障,雷达系统将在特定方向上“失明”。为了避免昂贵的冗余接收机硬件,已经研究了一种增加这种系统的可靠性的新方法。该方法基于所谓的散焦反射镜,该散焦反射镜可在故障条件下提供完整角域的可见性。本文介绍了导致散焦反射器概念的电磁因素。与传统的抛物面反射器系统相比,利用数字波束形成技术对散焦反射器系统的性能进行了评估。

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