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An imaging algorithm for synthetic aperture interferometric radiometers with built-in RFI mitigation

机译:具有内置RFI缓解功能的合成孔径干涉辐射计的成像算法

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Radio Frequency Interference (RFI) is probably one of the most important limiting factors in the accuracy of the brightness temperatures measured by microwave radiometers. Due to the proximity of the “protected” L-band (1400–1427 MHz) to numerous services (communication, localization, broadcast…), this band is seriously affected by RFI, preventing ESA's SMOS mission or NASA/CONAE Aquarius mission from retrieving soil moisture and ocean salinity over large areas of the world. In this work, a technique is presented as an attempt to mitigate the RFI at its origin, when the synthetic aperture image is being formed. The technique is based on the well-known beam- and null-steering techniques used in today's advanced communication systems, but generalized to the synthetic aperture case, by means of the so-called equivalent array factor, which allows to interpret the “synthetic aperture array” as a “real aperture array” with an antenna in the position of each baseline.
机译:射频干扰(RFI)可能是微波辐射计测量的亮度温度精度中最重要的限制因素之一。由于“受保护的” L频段(1400–1427 MHz)接近众多服务(通信,本地化,广播等),因此该频段受到RFI的严重影响,阻止了ESA的SMOS任务或NASA / CONAE Aquarius任务的检索世界大部分地区的土壤湿度和海洋盐度。在这项工作中,提出了一种技术,旨在在形成合成孔径图像时减轻RFI的起源。该技术基于当今先进的通信系统中使用的众所周知的波束控制和零转向技术,但借助于所谓的等效阵列因子可以推广到合成孔径情况,从而可以解释“合成孔径”。阵列”作为“实际孔径阵列”,在每个基线的位置都有一个天线。

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