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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Vicarious calibration of airborne hyperspectral sensors in operational environments
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Vicarious calibration of airborne hyperspectral sensors in operational environments

机译:运行环境中机载高光谱传感器的替代性校准

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A reflectance-based vicarious calibration (RBVC) method has been used to correct the radiometric coefficients for hyperspectral data obtained with the Probe 1 sensor over the Raglan region of northem Quebec, and to perform a radiance renormalisation for compact airborne spectrographic imager (casi) data obtained over Goose Bay, Labrador. It relies on the simultaneous acquisition of ground-based reflectance spectra for at least one calibration site within the hyperspectral flight line. The RBVC method yields a new set of radiometric coefficients that convert the hyperspectral data from digital numbers (DNs) to radiances, and that are applicable to flight lines taken under different conditions. For both the Raglan and the Goose Bay projects, the calibration site was a gravel airstrip, and ground-based reflectance measurements were made with a GER3700 field spectrometer using a Spectralon panel for reference. This represents a novel use of the RBVC method for validation and correction of the sensor's radiometric calibration at the time of data acquisition, applied in an operational setting that lacks a large, bright and homogeneous calibration tal get and well-characterized atmospheric conditions. Analysis of the errors involved in correcting the radiometric coefficients yielded a total relative error (averaged over wavelength) of 3.9-5.6% on the final reflectance spectra. (C) 2001 Elsevier Science Inc. All rights reserved. [References: 21]
机译:基于反射的替代校准(RBVC)方法已用于校正在北魁北克省Raglan地区使用Probe 1传感器获得的高光谱数据的辐射系数,并对紧凑型机载光谱成像仪(casi)数据执行辐射重新归一化从拉布拉多的鹅湾获得。它依赖于同时获取高光谱飞行线内至少一个校准点的地面反射光谱。 RBVC方法产生了一组新的辐射系数,该系数将高光谱数据从数字(DN)转换为辐射,并且适用于在不同条件下拍摄的飞行路线。对于Raglan和Goose Bay项目,校准地点均为砾石跑道,并且使用GER3700现场光谱仪使用Spectralon面板作为参考进行了地面反射率测量。这代表了RBVC方法在数据采集时验证和校正传感器辐射度校准的新颖用途,该方法应用于缺乏大型,明亮且均匀的校准范围和良好表征的大气条件的运行环境中。分析涉及校正辐射系数的误差后,最终反射光谱的总相对误差(在波长范围内平均)为3.9-5.6%。 (C)2001 Elsevier Science Inc.保留所有权利。 [参考:21]

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