Existing methods of measurement MTF for discrete imaging system are analysed. A slit target is frequently used to measure the MTF for an imaging system. Usually there are four methods to measure the MTF for a discrete...Existing methods of measurement MTF for discrete imaging system are analysed. A slit target is frequently used to measure the MTF for an imaging system. Usually there are four methods to measure the MTF for a discrete imaging system by using a slit. These methods have something imperfect respectively. But for the discrete imaging systems of under sampling it is difficult to reproduce this type of target properly since frequencies above Nyquist are folded into those below Nyquist, resulting in aliasing effect. To tackle the aliasing problem, a super resolution technique is introduced into our measurement, which gives MTF values both above and below Nyquist more accurately.展开更多
A new phase-correction method in a realistic loss superlens imaging system is theoretically predicted. The image resolution is enhanced using the near-field active phase-correction method. Resolvable separation betwee...A new phase-correction method in a realistic loss superlens imaging system is theoretically predicted. The image resolution is enhanced using the near-field active phase-correction method. Resolvable separation between two slits has been significantly improved to λ/20 for the symmetrical superlens system and λ/12 for unsymmetrical system.展开更多
调制传递函数补偿(Modulation Transfer Function Compensation,MTFC)处理可以恢复光学影像在成像、传输和处理过程中损失的高频信息,使得影像边缘更为清晰、细节更为丰富,从而改善影像质量。然而,随着遥感对地观测技术的不断发展,高空...调制传递函数补偿(Modulation Transfer Function Compensation,MTFC)处理可以恢复光学影像在成像、传输和处理过程中损失的高频信息,使得影像边缘更为清晰、细节更为丰富,从而改善影像质量。然而,随着遥感对地观测技术的不断发展,高空间分辨率影像数据量大,导致复原处理时计算量大、耗时长,成为高分辨率地面处理系统实时处理的瓶颈问题。为解决这一问题,提出了基于统一设备架构模型的MTFC并行处理方法,并根据算法特点对存储结构和并行计算结构进行了优化改进,利用真实卫星影像进行了验证实验。实验结果表明,在保证影像复原质量的前提下,提出的算法获得了45倍的加速比,可以满足地面系统实时处理的要求。展开更多
文摘Existing methods of measurement MTF for discrete imaging system are analysed. A slit target is frequently used to measure the MTF for an imaging system. Usually there are four methods to measure the MTF for a discrete imaging system by using a slit. These methods have something imperfect respectively. But for the discrete imaging systems of under sampling it is difficult to reproduce this type of target properly since frequencies above Nyquist are folded into those below Nyquist, resulting in aliasing effect. To tackle the aliasing problem, a super resolution technique is introduced into our measurement, which gives MTF values both above and below Nyquist more accurately.
基金Project supported by the National Basic Research Program of China(Grant No.2011CB301801)the National Natural Science Foundation of China(Grant Nos.10904099 and 11174211)
文摘A new phase-correction method in a realistic loss superlens imaging system is theoretically predicted. The image resolution is enhanced using the near-field active phase-correction method. Resolvable separation between two slits has been significantly improved to λ/20 for the symmetrical superlens system and λ/12 for unsymmetrical system.
文摘调制传递函数补偿(Modulation Transfer Function Compensation,MTFC)处理可以恢复光学影像在成像、传输和处理过程中损失的高频信息,使得影像边缘更为清晰、细节更为丰富,从而改善影像质量。然而,随着遥感对地观测技术的不断发展,高空间分辨率影像数据量大,导致复原处理时计算量大、耗时长,成为高分辨率地面处理系统实时处理的瓶颈问题。为解决这一问题,提出了基于统一设备架构模型的MTFC并行处理方法,并根据算法特点对存储结构和并行计算结构进行了优化改进,利用真实卫星影像进行了验证实验。实验结果表明,在保证影像复原质量的前提下,提出的算法获得了45倍的加速比,可以满足地面系统实时处理的要求。