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A method for generating forest/non-forest maps from TanDEM-X interferometric data

机译:一种从Tandem-x干涉管数据生成森林/非林地图的方法

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摘要

Land-cover classification by means of remote sensing data is of fundamental importance for a broad range of commercial and scientific uses. In particular, the detection of vegetated areas is of great interest for global change research and for applications in agriculture, cartography, geology, forestry, as well as regional planning. At a global level, only in the very last years high-resolution forest classification maps have been produced using global mosaics of multi-spectral Landsat sensor data, togetherudwith a forest cover change maps from 2000 to 2012 at 30 m resolution. Recently, the Advanced Land Observing Satellite (ALOS) L-band SAR from JAXA has produced a forest map with 25 m spacing from global mosaics collected from 2007 to 2010, by exploiting the variability in L-band of the HH and HV backscatter coefficients to discriminate between forest and non-forest areas.udThe aim of this paper is to present the first global forest/non-forest map obtained from TanDEM-X interferometric data. The TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurement) mission comprises the two twin satellites TerraSARX (TSX) and TanDEM-X (TDX), which fly in close orbit formation of a few hundred meters distance and act as a large single-pass SAR interferometer (InSAR) since October 2010, with the main goal of producing a global and consistent Digital Elevation Model (DEM) with an unprecedented accuracy. The quality of interferometric data pairs is strongly influencedudby the specific characteristics of the illuminated land-cover type. Over forested areas the presence of multiple scatterers at different heights and within a single resolution cell results in an increase of the interferometric phase uncertainty (the so-called volume decorrelation), whose intensity depends on several factors, such as the acquisition geometry, the sensor parameters,udand the canopy density. Hence, from each bistatic TanDEM-X coherence map the volume decorrelation contribution can be estimated and, from this, a forest/non-forest map is derived. This paper shows the developed approach for discriminating between forested and non-forested areas from TanDEM-X interferometric data, and presents some examples aimed at verifying the validity of the proposed method. From this, global mosaics are generated from the TanDEM-X quicklook data set at a final resolution of 25 m x� 25 m. Global statistics as well as validation with external data will be included in the final version of the paper.
机译:通过遥感数据的陆地覆盖分类对于广泛的商业和科学用途来说是至关重要的。特别是,对全球变革研究以及农业,制图,地质,林业以及区域规划的应用,植被领域的检测非常令人兴趣。在全球性层面,只有在过去几年中,已经使用多光谱覆盖传感器数据的全球马赛克制作了高分辨率的森林分类地图,其中 Udwith森林覆盖率从2000到2012的分辨率为30米到2012年。最近,Jaxa的先进土地观测卫星(ALOS)L频段SAR生产了一个森林地图,从2007年到2010年收集的全球马赛克,通过利用HH和HV反向散射系数的L波段的可变性,从2007年到2010年收集的全球马赛克的森林地图。歧视森林和非林区。本文的目的是介绍从Tandem-X干涉数据获得的第一个全球森林/非林地地图。 tandem-x(Dirtasar-x Constration测量)任务包括两个双卫星Terrasarx(TSX)和Tandem-X(TDX),它在距离轨道形成几百米的距离和充当A.自2010年10月以来大型单通SAR干涉仪(INSAR),主要是产生具有前所未有的准确性的全局和一致的数字高度模型(DEM)的主要目标。干涉式数据对的质量强烈影响 udby照明陆地覆盖类型的特定特性。在森林区域,在不同高度和单个分辨率单元内存在多个散射体的存在导致干涉相位不确定性(所谓的卷去相关)的增加,其强度取决于若干因素,例如采集几何,传感器等因素参数, udand冠层密度。因此,从每个BISTATIC串联X相干映射映射可以估计卷去相关贡献,从而导出森林/非林地地图。本文展示了从串联X干涉数据之间鉴定森林和非森林区域之间的开发方法,并提出了旨在验证所提出的方法的有效性的一些示例。由此,从TandeM-X Quicklook数据集,以25米x 1 25米的最终分辨率,生成全局马赛克。全局统计数据以及使用外部数据的验证将包含在本文的最终版本中。

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