超模式斜采样成像技术通过将两排探测器阵列倾斜成像提高相机空间分辨率。由于不满足香农采样定理,图像中出现混叠。为了降低混叠对遥感图像超分辨复原的影响,文章提出了一种结合最佳倒易晶胞的超分辨复原方法。该方法根据超模式斜采样...超模式斜采样成像技术通过将两排探测器阵列倾斜成像提高相机空间分辨率。由于不满足香农采样定理,图像中出现混叠。为了降低混叠对遥感图像超分辨复原的影响,文章提出了一种结合最佳倒易晶胞的超分辨复原方法。该方法根据超模式斜采样频域对偶网格建立相应的混叠模型,通过权重函数衡量噪声和混叠在频谱中的分布,得到噪声、混叠最小最佳倒易晶胞;并基于Huber-MRF(Markov Random Field)图像先验模型建立了耦合最佳倒易晶胞的MAP(Maximum a Posterior)超分辨复原模型。实验表明,该方法降低了超模式斜采样成像中混叠对复原的影响,获得了良好的超分辨复原效果。展开更多
Supersonic axisymmetric jet flow over a missile afterbody containing exhaust jet is simulated using the second order accurate positive schemes method developed for solving the axisymmetric Euler equations based on the...Supersonic axisymmetric jet flow over a missile afterbody containing exhaust jet is simulated using the second order accurate positive schemes method developed for solving the axisymmetric Euler equations based on the 2-D conservation laws.Comparisons between the numerical results and the experimental measurements show excellent agreements.The computed results are in good agreement with the numerical solutions obtained by using third order accurate RKDG finite element method.The results show larger gradient at discontinuous points compared with those obtained by second order accurate TVD schemes.It indicates that the presented method is efficient and reliable for solving the axisymmetric jet with external freestream flows,and shows that the method captures shocks well without numerical noise.展开更多
文摘超模式斜采样成像技术通过将两排探测器阵列倾斜成像提高相机空间分辨率。由于不满足香农采样定理,图像中出现混叠。为了降低混叠对遥感图像超分辨复原的影响,文章提出了一种结合最佳倒易晶胞的超分辨复原方法。该方法根据超模式斜采样频域对偶网格建立相应的混叠模型,通过权重函数衡量噪声和混叠在频谱中的分布,得到噪声、混叠最小最佳倒易晶胞;并基于Huber-MRF(Markov Random Field)图像先验模型建立了耦合最佳倒易晶胞的MAP(Maximum a Posterior)超分辨复原模型。实验表明,该方法降低了超模式斜采样成像中混叠对复原的影响,获得了良好的超分辨复原效果。
基金Supported by the National Natural Defense Basic Scientific Research Program of China(A262006-1288)the Key Disciplines Program of Shanghai Municipal Commission of Education(J50501)~~
文摘Supersonic axisymmetric jet flow over a missile afterbody containing exhaust jet is simulated using the second order accurate positive schemes method developed for solving the axisymmetric Euler equations based on the 2-D conservation laws.Comparisons between the numerical results and the experimental measurements show excellent agreements.The computed results are in good agreement with the numerical solutions obtained by using third order accurate RKDG finite element method.The results show larger gradient at discontinuous points compared with those obtained by second order accurate TVD schemes.It indicates that the presented method is efficient and reliable for solving the axisymmetric jet with external freestream flows,and shows that the method captures shocks well without numerical noise.