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编码孔径成像:均匀冗余阵列的预测性能

Coded aperture imaging: predicted performance of uniformly redundant arrays.

作者信息

Fenimore E E

出版信息

Appl Opt. 1978 Nov 15;17(22):3562-70. doi: 10.1364/AO.17.003562.

Abstract

Uniformly redundant arrays (URA) have autocorrelation functions with perfectly flat sidelobes. The URA combines the high-transmission characteristics of the random array with the flat sidelobe advantage of the nonredundant pinhole arrays. A general expression for the signal-to-noise ratio (SNR) has been developed for the URA as a function of the type of object being imaged and the design parameters of the aperture. The SNR expression is used to obtain an expression for the optimum aperture transmission. Currently, the only 2-D URAs known have a transmission of (1/2). This, however, is not a severe limitation because the use of the nonoptimum transmission of (1/2) never causes a reduction in the SNR of more than 30%. The predicted performance of the URA system is compared to the image obtainable from a single pinhole camera. Because the reconstructed image of the URA contains virtually uniform noise regardless of the original object's structure, the improvement over the single pinhole camera is much larger for the bright points than it is for the low intensity points. For a detector with high background noise, the URA will always give a much better image than the single pinhole camera regardless of the structure of the object. In the case of a detector with low background noise, the improvement of the URA relative to the single pinhole camera will have a lower limit of ~(2f)(-(1/2)), where f is the fraction of the field of view that is uniformly filled by the object.

摘要

均匀冗余阵列(URA)具有自相关函数,其旁瓣完全平坦。URA将随机阵列的高传输特性与非冗余针孔阵列的平坦旁瓣优势结合在一起。已经针对URA开发了信噪比(SNR)的一般表达式,该表达式是所成像物体类型和孔径设计参数的函数。SNR表达式用于获得最佳孔径传输的表达式。目前,已知的唯一二维URA的传输率为(1/2)。然而,这并不是一个严重的限制,因为使用非最佳传输率(1/2)绝不会导致SNR降低超过30%。将URA系统的预测性能与从单针孔相机获得的图像进行比较。由于URA的重建图像几乎包含均匀的噪声,而与原始物体的结构无关,因此对于亮点而言,相对于单针孔相机的改进要比低强度点大得多。对于具有高背景噪声的探测器,无论物体的结构如何,URA始终会提供比单针孔相机更好的图像。在探测器背景噪声较低的情况下,URA相对于单针孔相机的改进将有一个下限~(2f)^(-(1/2)),其中f是物体均匀填充的视场部分。

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