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An assessment of vegetation response to different moisture conditions at multiple resolutions.

机译:以多种分辨率评估植被对不同湿度条件的响应。

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摘要

Extreme variations in climatological inputs often have the most rapid and significant impacts on vegetation state. Better understanding of these problems requires monitoring of the land surface, quantification of surface characteristics and assessment of vegetation response to different moisture regimes. Therefore, this research was aimed at studying the impact of climatic conditions on vegetation, and the landscape structure using both coarse and fine spatial, spectral and temporal resolution remotely sensed data (i.e., SPOT-XS, AVHRR and SPOT-VGT) for the Black Hills region, South Dakota. The study focused on two objectives: including (a) investigation of the potential use of fine spatial resolution SPOT XS data for vegetation state detection and as mapping and monitoring tools for relatively heterogeneous land areas; (b) characterization and quantification of the effects of sub-pixel vegetation heterogeneity on the AVERR and SPOT-VGT NDVI response to different moisture conditions using high-resolution SPOT imagery.; The following results were obtained from this study. Vegetation is more responsive to dry conditions than wet conditions. Variations in NDVI values were generally associated with several landscape parameters such as vegetation type, canopy structure and density, health of vegetation, and heterogeneity or homogeneity of landscape. Examination of vegetation state over heterogeneous areas is scale dependent. Mixed pixels with a significant component of different land cover types were more responsive to moisture variations than homogenous pixels. Detecting the alfalfa and mixed areas are significantly affected by the properties of sensor systems such as spectral bandwidths. 1 x 1 km coarse NDVI pixel values were over/or underestimated based on dominant land cover by AVHRR and SPOT-VGT sensors. The geometrically and radiometrically improved SPOT-VGT sensor, which was specifically designed for vegetation studies with appropriate bandwidths, provided information content comparable with the fine resolution SPOT data. The most important contribution of this research was the indication that the coarse resolution (i.e., AVHRR, SPOT-VGT) NDVI response to different moisture conditions can be associated directly with the nature of the land cover encompassed by single pixel.
机译:气候输入的极端变化通常会对植被状况产生最迅速,最显着的影响。更好地理解这些问题需要监测土地表面,量化表面特征并评估植被对不同水分状况的响应。因此,本研究旨在利用粗糙和精细的空间,光谱和时间分辨率遥感数据(即SPOT-XS,AVHRR和SPOT-VGT)研究气候条件对植被的影响以及景观结构。南达科他州的丘陵地区。该研究集中在两个目标上:(a)调查精细空间分辨率SPOT XS数据在植被状态检测中的潜在用途,以及作为相对异质土地区域的制图和监测工具; (b)使用高分辨率SPOT图像表征和量化亚像素植被异质性对AVERR和SPOT-VGT NDVI对不同湿度条件的响应的影响;从这项研究中获得以下结果。植被对干燥条件的响应比对潮湿条件的响应更大。 NDVI值的变化通常与几个景观参数有关,例如植被类型,冠层结构和密度,植被健康状况以及景观的异质性或同质性。异质地区植被状况的检查取决于规模。具有不同土地覆盖类型的重要成分的混合像素比均质像素对水分变化的响应更强。苜蓿和混合区域的检测受到传感器系统特性(例如光谱带宽)的显着影响。根据AVHRR和SPOT-VGT传感器的主要土地覆盖,高估或低估了1 x 1 km的NDVI粗略像素值。几何和辐射测量改进的SPOT-VGT传感器专门为具有适当带宽的植被研究而设计,可提供与高分辨率SPOT数据相当的信息内容。这项研究的最重要贡献是表明对不同湿度条件的粗分辨率(即AVHRR,SPOT-VGT)NDVI响应可能与单个像素所包围的土地覆盖的性质直接相关。

著录项

  • 作者

    Karabulut, Murat.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Physical Geography.; Geotechnology.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然地理学;地质学;遥感技术;
  • 关键词

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