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Polyphase antialiasing in resampling of images

机译:图像重采样中的多相抗混叠

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Changing resolution of images is a common operation. It is also common to use simple, i.e., small, interpolation kernels satisfying some "smoothness" qualities that are determined in the spatial domain. Typical applications use linear interpolation or piecewise cubic interpolation. These are popular since the interpolation kernels are small and the results are acceptable. However, since the interpolation kernel, i.e., impulse response, has a finite and small length, the frequency domain characteristics are not good. Therefore, when we enlarge the image by a rational factor of (L/M), two effects usually appear and cause a noticeable degradation in the quality of the image. The first is jagged edges and the second is low-frequency modulation of high-frequency components, such as sampling noise. Both effects result from aliasing. Enlarging an image by a factor of (L/M) is represented by first interpolating the image on a grid L times finer than the original sampling grid, and then resampling it every M grid points. While the usual treatment of the aliasing created by the resampling operation is aimed toward improving the interpolation filter in the frequency domain, this paper suggests reducing the aliasing effects using a polyphase representation of the interpolation process and treating the polyphase filters separately. The suggested procedure is simple. A considerable reduction in the aliasing effects is obtained for a small interpolation kernel size. We discuss separable interpolation and so the analysis is conducted for the one-dimensional case.
机译:更改图像的分辨率是一种常见的操作。使用满足空间域中确定的某些“平滑”质量的简单即小插值内核也很普遍。典型应用使用线性插值或分段三次插值。由于插值内核很小并且结果可以接受,因此它们很受欢迎。但是,由于内插核,即脉冲响应,具有有限且较小的长度,因此频域特性不好。因此,当我们以(L / M)的有理因数放大图像时,通常会出现两种效果,并导致图像质量明显下降。第一个是锯齿状的边缘,第二个是高频分量的低频调制,例如采样噪声。两种效果均来自混叠。通过将图像插值到比原始采样网格细L倍的网格上,然后每M个网格点对其重新采样,来表示将图像放大(L / M)倍。虽然重采样操作产生的混叠的常规处理旨在改善频域中的插值滤波器,但本文建议使用插值过程的多相表示来减少混叠效果,并分别处理多相滤波器。建议的过程很简单。对于较小的插值内核,可以大大降低混叠效果。我们讨论可分离插值,因此针对一维情况进行分析。

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