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Analytical model of hyperspectral system performance

机译:高光谱系统性能分析模型

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Abstract: In support of hyperspectral sensor system design and parameter tradeoff investigations, an analytical end-to-end remote sensing system performance forecasting model is being developed. The model uses statistical descriptions of class reflectances in a scene and propagates them through the effects of the atmosphere, the sensor, and any processing transformations. A resultant system performance metric is then calculated based on these propagated statistics. The model divides a remote sensing system into three main components: the scene, the sensor, and the processing algorithms. Scene effects modeled include the solar illumination, atmospheric transmittance, shade effects, adjacency effects, and overcast clouds. Sensor effects modeled include the following radiometric noise sources: shot noise, thermal noise, detector readout noise, quantization noise, and relative calibration error. The processing component includes atmospheric compensation, various linear transformations, and a spectral matched filter used to obtain detection probabilities. This model has been developed for the HYDICE airborne imaging spectrometer covering the reflective solar spectral region from 0.4 to 2.5 $mu@m. The paper presents the theory and operation of the model, as well as provides the results of validation studies comparing the model predictions to results obtained using HYDICE data. An example parameter trade study is also included to show the utility of the model for system design and operation applications.!8
机译:摘要:为了支持高光谱传感器系统设计和参数权衡调查,正在开发分析端到端遥感系统性能预测模型。该模型使用场景中的类反射谱系的统计描述,并通过大气,传感器和任何处理变换的影响传播它们。然后基于这些传播的统计来计算得到的系统性能度量。该模型将遥感系统划分为三个主要组件:场景,传感器和处理算法。模型的场景效果包括太阳能照明,大气透射率,阴影效应,邻接效应和阴云密布云。所建模的传感器效果包括以下辐射噪声源:射击噪声,热噪声,检测器读数噪声,量化噪声和相对校准误差。处理部件包括大气补偿,各种线性变换和用于获得检测概率的光谱匹配滤波器。该模型已经为涵盖了0.4至2.5 $ MU @ M的反射太阳能光谱区域的水晶空气传播光谱仪开发了该模型。本文介绍了模型的理论和操作,以及提供了将模型预测与使用水平数据获得的结果进行比较的验证研究结果。还包括一个示例参数贸易研究,以显示系统设计和操作应用模型的实用程序。!8

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