NASA L-SAR instrument for the NISAR (NASA-ISRO) Synthetic Aperture Radar mission

J. Hoffman, S. Shaffer, D. Perkovic-Martin
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引用次数: 9

Abstract

The National Aeronautics and Space Administration (NASA) in the United States and the Indian Space Research Organization (ISRO) have partnered to develop an Earth-orbiting science and applications mission that exploits synthetic aperture radar to map Earth’s surface every 12 days or less. To meet demanding coverage, sampling, and accuracy requirements, the system was designed to achieve over 240 km swath at fine resolution, and using full polarimetry where needed. To address the broad range of disciplines and scientific study areas of the mission, a dual-frequency system was conceived, at L-band (24 cm wavelength) and S-band (10 cm wavelength). To achieve these observational characteristics, a reflector-feed system is considered, whereby the feed aperture elements are individually sampled to allow a scan-on-receive ("SweepSAR") capability at both L-band and S-band. The instrument leverages the expanding capabilities of on-board digital processing to enable real-time calibration and digital beamforming. This paper describes the mission characteristics, current status of the L-band Synthetic Aperture Radar (L-SAR) portion of the instrument, and the technology development efforts in the United States that are reducing risk on the key radar technologies needed to ensure proper SweepSAR operations.
用于NISAR (NASA- isro)合成孔径雷达任务的NASA L-SAR仪器
美国国家航空航天局(NASA)和印度空间研究组织(ISRO)合作开发了一项地球轨道科学和应用任务,利用合成孔径雷达每12天或更短时间对地球表面进行测绘。为了满足苛刻的覆盖范围、采样和精度要求,该系统被设计为在精细分辨率下实现超过240公里的区域,并在需要时使用全偏振测量。为了解决任务中广泛的学科和科学研究领域,设想了一个双频系统,在l波段(24厘米波长)和s波段(10厘米波长)。为了实现这些观测特性,考虑了反射馈电系统,其中馈电孔径元件单独采样,以实现l波段和s波段的接收扫描(“SweepSAR”)能力。该仪器利用机载数字处理的扩展功能,实现实时校准和数字波束形成。本文描述了该仪器的l波段合成孔径雷达(L-SAR)部分的任务特性、现状,以及美国为降低关键雷达技术风险所做的技术开发工作,这些关键雷达技术需要确保正确的SweepSAR操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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