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Quantum image scaling based on bilinear interpolation with arbitrary scaling ratio

机译:基于双线性插值与任意缩放比率的量子图像缩放

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In recent years, quantum image scaling considered as one of the most common and basic operations in quantum image processing has been widely studied. In this paper, quantum algorithm based on bilinear interpolation with arbitrary scaling ratio is proposed to resize quantum images. Firstly, a quantum image with arbitrary size HxW is described by the generalized quantum image representation. Then, bilinear interpolation is used to create new pixels (when scaling up) or delete redundant pixels (when scaling down). By utilizing the quantum operations that have been designed, the concrete circuits of quantum image scaling algorithm with arbitrary scaling ratio are implemented. Finally, the network complexity of the quantum circuits based on the basic quantum gates is analyzed and the simulation results based on the classical computer's MATLAB software are given.
机译:近年来,广泛研究了被认为是作为量子图像处理中最常见和基本操作之一的量子图像缩放。 本文提出了基于与任意缩放比率的比例插值的量子算法调整量子图像大小。 首先,通过广义量子图像表示描述了具有任意尺寸HXW的量子图像。 然后,使用双线性插值来创建新像素(缩放时)或删除冗余像素(在缩放时)。 通过利用设计的量子操作,实现了具有任意缩放比的量子图像缩放算法的混凝土电路。 最后,分析了基于基本量子门的量子电路的网络复杂性,并给出了基于经典计算机的MATLAB软件的仿真结果。

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