宽幅合成孔径雷达系统的光束形成概念

J. Ydreborg, S. Huber, G. Krieger
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引用次数: 0

摘要

利用一个或多个同步波束的扫描接收(SCORE)合成孔径雷达(SAR)进行高分辨率宽幅(HRWS)成像,目前正在使用数字波束形成范例进行大量研究。然而,一个竞争者是利用光子学的模拟波束形成。在这项工作中,利用最先进的SAR系统作为比较,研究了在更高频段和带宽的SAR系统中光子增强波束形成的可行性。推导了最常见的性能指标,并设计了一个SAR系统示例,讨论了可能的天线配置。讨论了适用于SAR系统的集成微波光子学(IMWP)平台,包括结构和材料。此外,对系统噪声和动态范围性能的调查揭示了许多需要解决的基本挑战,包括减少损耗,从而减少半导体光放大器(SOA)的数量和激光器的噪声性能。波束形成移相器和实时延迟(TTD)元件的重构速度对具有大量波束的SCORE操作至关重要,这限制了这些元件使用的可行材料。IMWP的现状表明,这些具有多波束和多信道的先进系统在SAR中很难实现,而在更简单的系统中实现更为可行。然而,IMWP的快速发展表明,这些波束形成系统将很快适用于SAR。
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Optical Beamforming Concepts for Wide-Swath Synthetic Aperture Radar Systems
High-resolution wide-swath (HRWS) imaging using scan-on-receive (SCORE) synthetic aperture radar (SAR) with one or multiple simultaneous beams is being heavily investigated using digital beamforming paradigms. However, a contender is analogue beamforming using photonics. In this work, the feasibility of photonics enhanced beamforming in SAR systems in higher frequency bands and bandwidths is investigated using a state-of-the-art SAR system as a comparison. The most common performance indicators are derived and an example SAR system is devised, with a discussion on potential antenna configurations. The integrated microwave photonics (IMWP) platforms available and most suited to SAR systems is discussed, including architectures and materials. Additionally, an investigation into system noise and dynamic range performance reveals a number of essential challenges that need to be addressed, including the reduction of losses an thereby the required number of semiconductor optical amplifiers (SOA) and the noise performance of the laser(s). The reconfiguration speed of beamforming phase shifters and true-time delay (TTD) elements are essential for SCORE operation with a large number of beams, which limits the viable materials used for these elements. The current state of IMWP indicate that these advanced systems with many beams and channels is very difficult to realize for SAR and implementations in simpler systems are more viable. However, the rapid development of IMWP indicate that these beamforming systems will soon be viable for SAR.
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