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Optimal Band Analysis for Dim Target Detection in Space-variant Sky Background

机译:时空天空背景下昏暗目标检测的最优谱带分析

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In this paper, a target and background driven simulation procedure is developed for optimal band analysis and performance evaluation of multispectral sensors for dim target detection, in which the observation geometry, target and background radiant characteristics, and the influence of infrared sensor system are integrated into. With the specified sensor altitude, the BeiHang University - Atmospheric Transfer Model (BHU-ATM) is adopted to calculate spectral irradiances of space-variant sky background. When a target with an assumed altitude exists in one line of sight (LOS), the corresponding nadir angle is used to calculate the distance between the target and the sensor, which impacts the target spectral irradiance at the sensor aperture. To analyze the optimal band for target detection, a set of spectral response functions with different central wavelengths and bandwidths are designed to calculate the target-to-background contrasts as well as the signal-to-noise ratios (SNRs). To demonstrate the usefulness of the developed procedure, typical sensor parameters are used to analyze the optimal band for aircraft detection. The band achieving the highest SNR is selected and used in the radiant image simulation for performance evaluation. The results show that the detection performance is related to spectral band as well as the LOS direction.
机译:本文提出了一种目标和背景驱动的仿真程序,用于对暗目标检测的多光谱传感器进行最佳的频带分析和性能评估,其中将观测几何形状,目标和背景辐射特性以及红外传感器系统的影响整合到了其中。在指定的传感器高度下,采用北航大学的大气转移模型(BHU-ATM)来计算时空天空背景的光谱辐照度。当在一个视线(LOS)中存在具有假定高度的目标时,将使用相应的最低点角来计算目标与传感器之间的距离,这会影响传感器孔径处的目标光谱辐照度。为了分析用于目标检测的最佳波段,设计了一组具有不同中心波长和带宽的光谱响应函数,以计算目标与背景的对比度以及信噪比(SNR)。为了证明所开发程序的有效性,典型的传感器参数用于分析飞机探测的最佳频段。选择达到最高SNR的频段,并将其用于辐射图像仿真以进行性能评估。结果表明,检测性能与谱带以及LOS方向有关。

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