The advancement of imaging resolution has made the impact of multi-frequency composite jitter in satellite platforms on non-collinear time delay and integration(TDI)charge-coupled device(CCD)imaging systems increasing...The advancement of imaging resolution has made the impact of multi-frequency composite jitter in satellite platforms on non-collinear time delay and integration(TDI)charge-coupled device(CCD)imaging systems increasingly critical.Moreover,the accuracy of jitter detection is constrained by the limited inter-chip overlap region inherent to non-collinear TDI CCDs.To address these challenges,a multi-frequency jitter detection method is proposed,achieving sub-pixel level error extraction.Furthermore,a multi-frequency jitter fitting approach utilizing a scale-adjustable sliding window is introduced.For composite multi-frequency jitter,spectral analysis decomposes the relative jitter error curve,while the scale-adjustable sliding window enables frequency-division fitting and modeling.Validation experiments using Gaofen-8(GF-8)remote sensing satellite imagery detected jitter at 0.65,20,and 100 Hz in the cross-track direction and at 0.5,100,and 120 Hz in the along-track direction,demonstrating the method’s precision in detecting platform jitter at sub-pixel accuracy(<0.2 pixels)and its efficacy in fitting and modeling for non-collinear TDI CCD imaging systems subject to multi-frequency jitter.展开更多
为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO...为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO)中的N C双键变单键和羟基O—H断开,形成新化学键(—HNCOO—)生成氨基甲酸酯;HT-PB与TDI是一个自发进行的固化反应;HTPB-TDI固化体系的力学性能得到了改善,为HTPB-TDI固化研究提供了一种切实可行的新方法。展开更多
文摘The advancement of imaging resolution has made the impact of multi-frequency composite jitter in satellite platforms on non-collinear time delay and integration(TDI)charge-coupled device(CCD)imaging systems increasingly critical.Moreover,the accuracy of jitter detection is constrained by the limited inter-chip overlap region inherent to non-collinear TDI CCDs.To address these challenges,a multi-frequency jitter detection method is proposed,achieving sub-pixel level error extraction.Furthermore,a multi-frequency jitter fitting approach utilizing a scale-adjustable sliding window is introduced.For composite multi-frequency jitter,spectral analysis decomposes the relative jitter error curve,while the scale-adjustable sliding window enables frequency-division fitting and modeling.Validation experiments using Gaofen-8(GF-8)remote sensing satellite imagery detected jitter at 0.65,20,and 100 Hz in the cross-track direction and at 0.5,100,and 120 Hz in the along-track direction,demonstrating the method’s precision in detecting platform jitter at sub-pixel accuracy(<0.2 pixels)and its efficacy in fitting and modeling for non-collinear TDI CCD imaging systems subject to multi-frequency jitter.
文摘为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO)中的N C双键变单键和羟基O—H断开,形成新化学键(—HNCOO—)生成氨基甲酸酯;HT-PB与TDI是一个自发进行的固化反应;HTPB-TDI固化体系的力学性能得到了改善,为HTPB-TDI固化研究提供了一种切实可行的新方法。