标准化光谱(400-2500 nm)和相关元数据:来自澳大利亚北部热带地区的一个例子

K. Pfitzner, A. Bollhöfer, Andrew J. Esparon, R. Bartolo, G. Staben
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引用次数: 6

摘要

遥感界对包含原位辐射、辐照度、反射率和透射率数据的全球光谱库很感兴趣,但缺乏伴随适当元数据的高质量光谱数据是光谱库往往处于“内部”状态的主要原因。我们已经获得了超过15000个基于现场和实验室的光谱,这些光谱有相关的元数据,描述了如何以及为什么进行测量,并记录了可能影响光谱响应的任何外部因素,如环境云量。照片记录伴随着光谱数据和元数据。设计了一个数据库来管理和连接各种数据。使用一系列过滤器对数据进行分类,并在数据处理之前运行质量保证措施。以这种方式获取和管理光谱数据,使这些数据可能适用于它们原本目的以外的应用,例如进行遥感可行性研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standardised spectra (400-2500 nm) and associated metadata: An example from northern tropical Australia
Global spectral libraries of in situ radiance, irradiance, ref ectance and transmittance data are of interest to the remote sensing community, but a lack of quality spectral data accompanied by appropriate metadata is the main reason why spectral libraries often remain “in-house”. We have acquired over 15000 field and laboratory-based spectra, which have associated metadata describing how and why the measurements were taken and documentation of any extraneous factors, such as environmenta cloud cover, that may influence the spectra response. Photographic records accompany the spectral data and metadata. A database was designed to manage and link the varied data. A series of filters are used to classify the data and run quality assurance measures prior to data processing. Acquiring and managing spectral data in this way make these data potentially suitable for applications other than for which they were intended, such as performing remote sensing feasibility studies.
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