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Resolution enhanced partial aperture imaging system using annular coded phase reflectors

机译:分辨率增强的局部孔径成像系统使用环形编码相反射器

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Imaging with partial apertures is suitable for applications where compact, light-weight, and cost-effective optical systems are desired. The feasibility of a partial aperture imaging system (PAIS) with a single annular coded-phase aperture was first studied for future space and ground-based telescopic systems. The concept of PAIS is based on the interferenceless coded aperture correlation holography (I-COACH) technique. Since I-COACH is an incoherent and interferenceless technique, it is compatible with telescopic applications. Although, in PAIS, only a small fraction of light is modulated by the coded aperture the image resolution of PAIS is similar to that of full-aperture imaging systems. In this study, the design and the reconstruction technique of PAIS are modified to provide higher image quality with improved resolution, lower noise, and higher visibility. The upgraded design makes use of sparse-response holograms and a nonlinear reconstruction. Far-field imaging usually suffers from lower power signals at the sensor plane, causing a lower signal-to-noise ratio (SNR) and degradation in the image quality. To improve the SNR, it is crucial to use a power-efficient system, with higher signal intensity per camera pixel. This goal can be achieved by accumulating all the incoming power to a small sensor area, and distributing the light between several randomly distributed dots on the sensor, instead of inefficiently spreading the light over the entire camera plane. The results of the modified PAIS (M-PAIS) are reconstructed by a nonlinear correlation to provide well-resolved images which are compared with full aperture direct imaging results.
机译:具有局部孔的成像适用于需要紧凑,轻质和经济高效的光学系统的应用。首先研究了与单个环形编码相孔的部分孔径成像系统(PAI)的可行性,用于将来的空间和基于地基伸缩系统研究。 PAI的概念基于干涉码孔径相关全息术(I-Coach)技术。由于I-Coach是一种不连贯和干涉的技术,因此它与伸缩应用相容。虽然在PAI中,通过编码孔径仅调制小型光,但是PAI的图像分辨率类似于全孔径成像系统的图像分辨率。在本研究中,PAI的设计和重建技术被修改为提供更高的图像质量,具有改进的分辨率,降低噪声和更高的可视性。升级设计利用稀疏响应全息图和非线性重建。远场成像通常遭受传感器平面处的较低功率信号,导致较低的信噪比(SNR)和图像质量的劣化。为了改善SNR,使用功率有效的系统至关重要,每个相机像素具有更高的信号强度。通过将所有进入的电力累积到小传感器区域,并且在传感器上的几个随机分布点之间分布光,而不是在整个相机平面上延伸光的光线之间的光。修改的PAI(M-PAI)的结果由非线性相关性重建,以提供与完全孔径直接成像结果进行比较的解析图像。

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