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Detection of interannual variation of vegetation in middle and southern Italy during 1985-1999 with 1 Km NOAA AVHRR NDVI data

机译:利用1 Km NOAA AVHRR NDVI数据检测1985-1999年意大利中南部植被的年际变化

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摘要

The potential of NOAA-advanced very high resolution radiometer (AVHRR) time series for environmental studies was investigated at the pixel scale. We analyzed a multitemporal set of annual maximum value composite (MVC) of normalized difference vegetation index. Local area coverage data of middle and southern Italy were processed from measurements taken between 1985 and 1999 of the afternoon viewing of NOAA9, 11, and 14. Significant artificial anomalies were found due to satellite switch, short-wave calibration instability and illumination effects. We removed such systematic errors and achieved a strong reduction of standard deviation values (around 50%). Interesting results were obtained from a change detection analysis performed at the pixel level. Outcomes from satellite-based analysis were compared with independent time series data, such as ancillary meteorological data, forest fire archives, and results from field surveys. Results showed that the geographical areas where MVC data indicated a decrease in vegetation activity match well with areas affected by forest fires, intense human activity, or rapid decline of coniferous forests. In contrast, an increase in MVC was found in regions recently involved in a growth of intensive fanning or invaded by alien plants which are now recognized as a threat to native species. Our exploratory results indicate that high-quality AVHRR data can profitably support studies on interannual dynamics of surface parameters. In particular, our parameterization of illumination and calibration adjustments can be directly applied to Mediterranean-like ecosystems.
机译:在像素尺度上研究了NOAA先进的超高分辨率辐射计(AVHRR)时间序列在环境研究中的潜力。我们分析了归一化差异植被指数的年度最大值复合(MVC)的多时间集合。意大利中南部地区的覆盖率数据是根据1985年至1999年下午观测NOAA9、11和14的测量数据处理的。由于卫星切换,短波校准不稳定性和照明效果,发现了明显的人为异常。我们消除了此类系统错误,并大大降低了标准偏差值(约50%)。从在像素级别执行的变化检测分析获得了有趣的结果。将基于卫星的分析结果与独立的时间序列数据进行了比较,例如辅助气象数据,森林火灾档案以及实地调查的结果。结果表明,MVC数据表明植被活动减少的地理区域与受森林大火,人类活动密集或针叶林迅速衰退影响的区域非常吻合。相比之下,最近参与密集扇形繁殖或被外来植物入侵的地区发现MVC有所增加,这些植物现已被视为对本土物种的威胁。我们的探索性结果表明,高质量的AVHRR数据可以有益地支持对表面参数的年际动力学的研究。特别是,我们对照明的参数化和校准调整可以直接应用于类似地中海的生态系统。

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