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Design of coded aperture arrays by means of a global optimization algorithm

机译:借助全局优化算法设计编码孔径阵列

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Coded aperture imaging (CAI) has evolved as a standard technique for imaging high energy photon sources and has found numerous applications. Coded aperture arrays (CAAs) are the most important devices in the applications of CAI. In recent years, many approaches were presented to design optimum or near-optimum CAAs. Uniformly redundant arrays (URAs) are the most successful CAAs for their cyclic autocorrelation consisting of a sequence of delta functions on a flat sidelobe which can easily be subtracted when the object has been reconstructed. Unfortunately, the existing methods can only be used to design URAs with limited number of array sizes and fixed autocorrelative sidelobe-to-peak ratio. In this paper, we presented a method to design more flexible URAs by means of a global optimization algorithm named DIRECT. By our approaches, we obtain various types of URAs including the filled URAs which can be constructed by existing methods and the sparse URAs which never be constructed and mentioned by existing papers as far as we know.
机译:编码孔径成像(CAI)已发展成为用于对高能光子源成像的标准技术,并已发现了许多应用。编码孔径阵列(CAA)是CAI应用中最重要的设备。近年来,提出了许多方法来设计最佳或接近最佳的CAA。均匀冗余阵列(URA)是最成功的CAA,因为它们的循环自相关由平面旁瓣上的一系列delta函数组成,在重建对象时可以很容易地将它们相减。不幸的是,现有方法只能用于设计阵列大小有限且自相关旁瓣峰比固定的URA。在本文中,我们提出了一种通过名为DIRECT的全局优化算法来设计更灵活的URA的方法。通过我们的方法,我们获得了各种类型的URA,包括可以通过现有方法构建的填充URA,以及据我们所知,从未被现有论文构建和提及的稀疏URA。

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