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首页> 外文期刊>Tropical Ecology >Synergetic use of in situ and hyperspectral data for mapping species diversity and above ground biomass in Shoolpaneshwar Wildlife Sanctuary, Gujarat
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Synergetic use of in situ and hyperspectral data for mapping species diversity and above ground biomass in Shoolpaneshwar Wildlife Sanctuary, Gujarat

机译:协同用途使用原位和高光谱数据,用于将物种多样性和上面的地面生物质在小山峰野生动物保护区,Gujarat

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Biodiversity loss in tropical forests is rapidly increasing, which directly influence the biomass and productivity of an ecosystem. In situ methods for species diversity assessment and biomass in synergy with hyperspectral data can adeptly serve this purpose and hence adopted in this study. Quadrat sampling was carried out in Shoolpaneshwar Wildlife Sanctuary (SWS), Gujarat, which was used to compute Shannon-Weiner Diversity Index (H '). Above ground biomass (AGB) was calculated measuring the Height and Diameter at Breast Height (DBH) of different trees in the sampling plots. Four spectral indices, namely Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Photochemical Reflectance Index (PRI), and Structure Insensitive Pigment Index (SIPI) were derived from the EO-1 Hyperion Data. Spearman and Pearson's correlation analysis was performed to examine the relationship between H ', AGB and spectral indices. The best fit model was developed by establishing a relationship between H ' and AGB. Fifteen models were developed by performing multiple linear regression analysis using all possible combinations of spectral indices and H ' and their validation was performed by relating observed H ' with model predicted H '. Pearson's correlation relation showed that SIPI has the best relationship with the H '. Model 15 with a combination of NDVI, PRI and SIPI was determined as the best model for retrieving H ' based on its statistics performance and hence was used for generating species diversity map of the study area. Power model showed the best relationship between AGB and H ', which was used for the development of AGB map.
机译:热带森林中的生物多样性损失正在迅速增加,这直接影响了生态系统的生物量和生产力。在Synies的原位方法中,Syperspectral数据的协同作用中的分析评估和生物量可以娴熟地为此目的服务,因此在本研究中采用。 Quadrat抽样是在小学生野生动物保护区(SWS),古吉拉特邦进行的,用于计算Shannon-Weiner多样性指数(H')。在上面的地面生物量(AGB)以上测量采样图中不同树木的乳房高度(DBH)的高度和直径。来自EO-1 Hyperion数据的推导出四个光谱指数,即归一化差异植被指数(NDVI),增强植被指数(EVI),光化学反射率指数(PRI)和结构不敏感颜料指数(SIPI)。 Spearman和Pearson的相关性分析进行了检查H',AGB和光谱指数之间的关系。通过建立H'和AGB之间的关系开发了最佳拟合模型。通过使用频谱指数的所有可能组合和H'进行多元线性回归分析开发了十五型模型,并且通过与预测H'的模型的观察H'进行了验证来执行它们的验证。 Pearson的相关关系表明,SIPI与H'具有最佳关系。模型15具有NDVI,PRI和SIPI的组合,被确定为基于其统计表现来检索H'的最佳模型,因此用于生成研究区域的物种多样性图。功率模型显示了AGB和H'之间的最佳关系,用于开发AGB地图。

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