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Unsupervised Monitoring Vegetation after the Closure of an Ore Processing Site with Multi-Temporal Optical Remote Sensing

机译:用多时间光学遥感关闭矿石加工站点后无监督监测植被

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摘要

Ore processing is a source of soil heavy metal pollution. Vegetation traits (structural characteristics such as spatial cover and repartition; biochemical parameters—pigment and water contents, growth rate, phenological cycle…) and plant species identity are indirect and powerful indicators of residual contamination detection in soil. Multi-temporal multispectral satellite imagery, such as the Sentinel-2 time series, is an operational environment monitoring system widely used to access vegetation traits and ensure vegetation surveillance across large areas. For this purpose, methodology based on a multi-temporal fusion method at the feature level is applied to vegetation monitoring for several years from the closure and revegetation of an ore processing site. Features are defined by 26 spectral indices from the literature and seasonal and annual change detection maps are inferred. Three indices—CIred-edge (CIREDEDGE), IRECI (Inverted Red-Edge Chlorophyll Index) and PSRI (Plant Senescence Reflectance Index)—are particularly suitable for detecting changes spatially and temporally across the study area. The analysis is conducted separately for phyto-stabilized vegetation zones and natural vegetation zones. Global and specific changes are emphasized and explained by information provided by the site operator or meteorological conditions.
机译:矿石加工是土壤重金属污染的源泉。植被特征(诸如空间覆盖和再分发等结构特征;生物化学参数 - 颜料和水含量,生长速率,鉴别循环......)和植物物种形式是土壤中残留污染检测的间接和强大指标。多时间多光谱卫星图像,如哨兵-2时间序列,是一种广泛用于访问植被特征的操作环境监测系统,并确保大面积植被监测。为此目的,根据特征级别的多时间融合方法的方法应用于矿石处理站点的封闭和再培养的几年内的植被监测。特征由来自文献和季节性的26个光谱指数定义,并推断出年度变化检测地图。三个索引铰接边缘(CiredEdge),Ireci(倒置红菱叶片指数)和PSRI(植物衰老反射指数) - 特别适用于在研究区域的空间和时间上检测变化。分析是单独进行的植物稳定的植被区和天然植被区。通过现场运营商或气象条件提供的信息,强调和解释了全局和具体的变化。

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