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Theoretical analysis on the characterization of imaging systems using Euclid distance

机译:欧几里德距离成像系统特征的理论分析

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The Euclid distance derived from the spatial domain distribution function for the performance characterization of imaging systems is presented and theoretically analyzed. The two-dimensional distribution functions of the objects and images, usually quadratically integrable, are investigated. The Euclid distance between the practical image and the ideal image is utilized to comprehensively characterize the imaging system performance. Moreover, the amplitude ratio and the fidelity are defined from the distribution functions of the practical and the ideal image and are related to the Euclid distance, revealing its physical meaning and merits. The geometrical representation of the Euclid distance is also derived and presented. The Euclid distance is monotonous to the performance of imaging systems, thus it can be used readily in the design and optimization of the imaging systems along with its intuitionistic and scalar features.
机译:介绍了从空间域分布函数的euclID距离,用于进行成像系统的性能表征的次数和理论上分析。研究了对象和图像的二维分布功能,通常是二元完全的。利用实际图像和理想图像之间的欧元距离来全面地表征成像系统性能。此外,幅度比和保真度由实际和理想图像的分布函数定义,并且与欧几克里德距离有关,揭示其物理意义和优点。还导出和呈现了EuclID距离的几何表示。欧几克里德距离是对成像系统的性能单调的,因此可以容易地用于成像系统的设计和优化以及其直觉和标量特征。

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