...
首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Capabilities of BIOMASS Tomography for Investigating Tropical Forests
【24h】

Capabilities of BIOMASS Tomography for Investigating Tropical Forests

机译:BIOMASS层析成像技术研究热带森林的能力

获取原文
获取原文并翻译 | 示例
           

摘要

The objective of this paper is to provide a better understanding of the capabilities of the BIOMASS tomography concerning the retrieval of forest biomass and height in tropical areas. The analysis presented in this paper is carried out on airborne data acquired by Office National d'Etudes et de Recherches Aérospatiales (ONERA) over the site of Paracou, French Guiana, during the European Space Agency campaign TropiSAR. This high-resolution data set (125-MHz bandwidth) was reprocessed in order to generate a new data stack consistent with BIOMASS as for the bandwidth (6 MHz) and the azimuth resolution (about 12 m). To do this, two different processing approaches have been considered. One approach consisted of degrading the resolution of the airborne data through the linear filtering of raw data, followed by standard SAR processing. The other approach consisted of recovering the 3-D distribution of the scatterers at a high resolution, which was then reprojected onto the BIOMASS geometry. The latter procedure allows us to obtain a data stack that is the most realistic emulation of BIOMASS imaging capabilities. In both approaches, neither ionospheric disturbances nor temporal decorrelation has been considered. The connection to the forest biomass has been examined in both cases by investigating the correlation between the backscatter at different forest heights and the above-ground biomass (AGB) values from in situ data. As expected, the reduction of the system bandwidth to 6 MHz resulted in significant vertical resolution losses compared with the original airborne data. Nevertheless, it was possible to retrieve the forest height to within an accuracy of better than 4 m, whereas the backscattered power at the volume height (30 m above the ground) exhibited a correlation higher than 0.8 with the in situ data and no bias phenomena over the AGB values ranging from 250 to 450 t/ha.
机译:本文的目的是提供对BIOMASS层析成像有关热带地区森林生物量和高度恢复的能力的更好理解。本文介绍的分析是在欧洲航天局TropiSAR运动期间,由法国国家研究与发展局(ONERA)在法属圭亚那的帕拉库站点获取的机载数据进行的。对该高分辨率数据集(125 MHz带宽)进行了重新处理,以生成与BIOMASS一致的带宽(6 MHz)和方位角分辨率(约12 m)的新数据堆栈。为此,已经考虑了两种不同的处理方法。一种方法包括通过对原始数据进行线性过滤来降低机载数据的分辨率,然后进行标准SAR处理。另一种方法包括以高分辨率恢复散射体的3-D分布,然后将其重新投影到BIOMASS几何体上。后面的过程使我们能够获得数据堆栈,它是BIOMASS成像功能的最现实的仿真。在这两种方法中,都没有考虑电离层干扰或时间去相关。在这两种情况下,都通过调查不同森林高度的反向散射与原位数据中地上生物量(AGB)值之间的相关性,研究了与森林生物量的联系。不出所料,与原始机载数据相比,将系统带宽减小到6 MHz会导致严重的垂直分辨率损失。尽管如此,仍可以将森林高度恢复到优于4 m的精度范围内,而与原位数据相关的体高(距地面30 m)处的反向散射功率显示出高于0.8的相关性。 AGB值在250至450吨/公顷之间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号