首页> 外文期刊>IEE Proceedings. Part F, Radar, sonar and navigation >Recent advances in extra-wide-band polarimetry, interferometry and polarimetric interferometry in synthetic aperture remote sensing and its applications
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Recent advances in extra-wide-band polarimetry, interferometry and polarimetric interferometry in synthetic aperture remote sensing and its applications

机译:合成孔径遥感中超宽带偏振,干涉和偏振干涉的最新进展及其应用

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The development of radar polarimetry and radar interferometry is advancing rapidly, and these novel radar technologies are revamping 'synthetic aperture radar imaging' decisively. The successive advancements are sketched eginning with the fundamental formulations and highlighting the salient points of these diverse remote sensing techniques. Whereas with radar polarimetry the textural fine-structure, target orientation and shape, symmetries and material constituents can be recovered with considerable improvements above that of standard 'amplitude-only polarisation radar'; with radar interferometry the spatial (in depth) structure can be explored. In 'polarimetric-interferometric synthetic aperture radar (POL-IN-SAR) imaging' it is possible to recover such co-registered textural plus spatial properties simultaneously. This includes the extraction of 'digital elevation maps (DEM)' from either 'fully polarimetric (scattering matrix)' or 'interferometric (dual antenna) SAR image data takes' with the additional benefit of obtaining co-registered three-dimensional 'POL-IN-DEM' information. Extra-wide-band POL-IN-SAR imaging - when applied to 'repeat-pass image overlay interferometry' - provides differential background validation and measurement, stress assessment, and environmental stress-change monitoring capabilities with hitherto unattained accuracy, which are essential tools for improved global biomass estimation and also for wetland assessment and monitoring. More recently, by applying multiple parallel repeat-pass EWB-POL-D(RP)-IN-SAR imaging along stacked (altitudinal) or displaced (horizontal) flight-lines will result in 'tomographic (multi-interferometric) polarimetric SAR stereo-imaging', including foliage- and ground-penetrating capabilities. In addition, various closely related topics of (i) acquiring additional and protecting existing spectral windows of the 'natural electromagnetic spectrum (NES)' pertinent to remote sensing; and (ii) mitigation against common 'radio frequency interference (RFI)' and intentional 'directive jamming of airborne and spaceborne POL-IN-SAR imaging platforms' are appraised.
机译:雷达极化仪和雷达干涉仪的发展迅速,这些新颖的雷达技术正在果断地改造“合成孔径雷达成像”。概述了后续的进展,例如以基本公式表述并突出了这些不同的遥感技术的要点。借助雷达极化技术,可以恢复结构的精细结构,目标定向和形状,对称性和材料成分,并且比标准的“仅振幅极化雷达”要大得多。利用雷达干涉测量法,可以探索空间(深度)结构。在“偏振干涉合成孔径雷达(POL-IN-SAR)成像”中,可以同时恢复这种共同注册的纹理和空间特性。这包括从“全极化(散射矩阵)”或“干涉(双天线)SAR图像数据中提取”“数字高程图(DEM)”,并获得获得共同注册的三维“ POL- IN-DEM的信息。超宽带POL-IN-SAR成像技术-应用于“重复通过图像叠加干涉法”时-提供差异化​​的背景验证和测量,应力评估以及环境应力变化监测功能,这是迄今为止无法达到的精度,这是必不可少的工具用于改进全球生物量估算以及湿地评估和监测。最近,通过沿堆叠的(垂直)或位移的(水平)飞行线应用多个平行的重复通过EWB-POL-D(RP)-IN-SAR成像,将产生“断层摄影(多干涉)极化SAR立体图像”成像”,包括穿透树叶和穿透地面的功能。此外,以下各个密切相关的主题:(i)获取与遥感有关的“自然电磁频谱(NES)”的额外频谱窗口并加以保护; (ii)评估减轻常见的“射频干扰”(RFI)和有意的“机载和星载POL-IN-SAR成像平台的定向干扰”。

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