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On-Orbit Lunar Modulation Transfer Function Measurements for the Moderate Resolution Imaging Spectroradiometer

机译:中分辨率成像光谱仪的月球调制传递函数测量

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Spatial quality of an imaging sensor can be estimated by evaluating its modulation transfer function (MTF) from many different sources such as a sharp edge, a pulse target, or bar patterns with different spatial frequencies. These well-defined targets are frequently used for prelaunch laboratory tests, providing very reliable and accurate MTF measurements. A laboratory-quality edge input source was included in the spatial-mode operation of the Spectroradiometric Calibration Assembly (SRCA), which is one of the onboard calibrators of the Moderate Resolution Imaging Spectroradiometer (MODIS). Since not all imaging satellites have such an instrument, SRCA MTF estimations can be used as a reference for an on-orbit lunar MTF algorithm and results. In this paper, the prelaunch spatial quality characterization process from the Integrated Alignment Collimator and SRCA is briefly discussed. Based on prelaunch MTF calibration using the SRCA, a lunar MTF algorithm is developed and applied to the lifetime on-orbit Terra and Aqua MODIS lunar collections. In each lunar collection, multiple scan-direction Moon-to-background transition profiles are aligned by the subpixel edge locations from a parametric Fermi function fit. Corresponding accumulated edge profiles are filtered and interpolated to obtain the edge spread function (ESF). The MTF is calculated by applying a Fourier transformation on the line spread function through a simple differentiation of the ESF. The lifetime lunar MTF results are analyzed and filtered by a relationship with the Sun–Earth–MODIS angle. Finally, the filtered lunar MTF values are compared to the SRCA MTF results. This comparison provides the level of accuracy for on-orbit MTF estimations validated through prelaunch SRCA measurements. The lunar MTF values had larger uncertainty than the SRCA MTF results; however, the ratio mean of lunar MTF fit and SRCA MTF values is within 2% in the 250- and 500-m bands. Based on the MTF measurement u- certainty range, the suggested lunar MTF algorithm can be applied to any on-orbit imaging sensor with lunar calibration capability.
机译:成像传感器的空间质量可以通过评估其调制传递函数(MTF)来估算,该调制传递函数来自许多不同的来源,例如尖锐边缘,脉冲目标或具有不同空间频率的条形图。这些定义明确的目标通常用于启动前的实验室测试,从而提供非常可靠和准确的MTF测量。实验室质量的边缘输入源包括在光谱辐射校准组件(SRCA)的空间模式操作中,该组件是中等分辨率成像光谱辐射仪(MODIS)的机载校准器之一。由于并非所有的成像卫星都具有这种仪器,因此SRCA MTF估计可以用作月球MTF在轨算法和结果的参考。本文简要讨论了集成对准准直仪和SRCA发射前的空间质量表征过程。基于使用SRCA的发射前MTF校准,开发了月球MTF算法,并将其应用于终生在地Terra和Aqua MODIS月球集合。在每个月球集合中,多个扫描方向月球到背景的过渡曲线由参数Fermi函数拟合中的子像素边缘位置对齐。对相应的累积边缘轮廓进行滤波和内插以获得边缘扩展函数(ESF)。通过对ESF进行简单微分,对线扩展函数应用傅里叶变换来计算MTF。通过与太阳-地球-MODIS角的关系来分析和过滤终生月球MTF结果。最后,将过滤后的月球MTF值与SRCA MTF结果进行比较。这种比较为通过发射前SRCA测量验证的在轨MTF估算提供了准确度。月球MTF值比SRCA MTF结果具有更大的不确定性。但是,在250和500 m波段,月球MTF拟合和SRCA MTF值的均值均在2%以内。基于MTF测量的确定性范围,建议的月球MTF算法可以应用于任何具有月球校准能力的在轨成像传感器。

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