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On-Orbit MTF Estimation for GF-4 Satellite Using Spatial Multisampling on a New Target

机译:在新目标上使用空间多相采样的GF-4卫星的轨道MTF估计

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GF-(Gaofen- means high resolution in Chinese) satellite launched in 2015 is the first geosynchronous orbit remote sensing satellite in China. To evaluate the on-orbit modulation transfer function (MTF) of the space-borne panchromatic camera in GF-4, a modified pulse target is proposed. This new type target is laid in the uniform low-reflection background region whose center region is a high-reflection square with the size of 3 similar to 4 ground sampled distance (GSD), and then two low-reflection rectangle stripes are extended along the center square toward both ends with the length over 4 GSD. In consideration of the staring imaging mechanism of GF-4, the target image sequences are accessed with relative random distance taken by the space-borne camera in a short period to reduce accidental error of one sampling and enhance the accuracy of estimation. Based on the multi-sampling calibrating images, maximum a posteriori estimation model and gradient descent solution with grid searching method are used to fit the pulse response function (PRF) when taking the target center positions as references. MTF is then calculated from PRF via Fourier transformation. Numerical simulation results reveal our method can keep the accuracy stable despite of different kinds of noise. Actual calibration result using this method shows that on-orbit MTF of GF-4 camera at Nyquist frequency is 0.1473.
机译:GF-(高芬 - 意味着中国的高分辨率在2015年推出的卫星是中国第一个地球同步轨道遥感卫星。为了评估GF-4中的空间型Panchromic相机的On-Orbit调制传递函数(MTF),提出了一种改进的脉冲目标。这种新型目标被铺设在均匀的低反射背景区域,其中心区域是高反射方形的高反射方,其尺寸与4个接地采样距离(GSD)相似,然后两个低反射矩形条纹沿着中心正方形两端,长度超过4 GSD。考虑到GF-4的凝视成像机制,在短时间内通过空间相机拍摄的相对随机距离来访问目标图像序列,以减少一个采样的意外误差并增强估计的准确性。基于多抽样校准图像,使用网格搜索方法的最大后后估计模型和梯度下降解决方案用于拟合目标中心位置作为参考的时脉冲响应函数(PRF)。然后通过傅里叶变换从PRF计算MTF。数值模拟结果揭示了我们的方法尽管噪音不同,但尽管噪音不同。使用此方法的实际校准结果表明,Nyquist频率下GF-4相机的On-Orbit MTF为0.1473。

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