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A fast convolution method using basis expansion for highly efficient intensity calculation in mask optimization

机译:使用基数展开的快速卷积方法,用于掩模优化中的高效强度计算

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Finer grid representation is inevitable to describing mask patterns more accurately in inverse lithography technology (ILT), thus resulting in large-size mask representation and heavy computational cost. In this work we proposed a fast convolution method called convolution using basis expansion (CBE) method to resolve computational issues caused by intensive convolutions. The CBE method process can be elaborated as: 1) Project mask and kernel matrices from fine grid representation to coarse grid representation under certain basis functions, which is similar to DCT or wavelet transformations. This matrix formed by the expansion coefficient can be considered as the projection of the original large matrix on coarse grid; 2) Perform mask and kernel convolutions on coarse grids; 3) the convolution result on fine grids is restored by interpolation method. The selection of the basis set can be arbitrary. In this paper, we compare the convolution accuracy and computational cost using 1) linear basis function; 2)discrete cosine basis function; 3) basis function based on K-L transform for different fine and coarse matrix size ratios n in both 1-D and 2-D conditions. Also, the quantitative interpolation error of cubic spline interpolation function is discussed. In numerical verification of aerial image calculation, this new method provides almost the same effectiveness and 10X~20X running speed improvement comparing to traditional convolution method. The CBE method will show its large effectiveness and efficiency in mask optimization.
机译:为了在反光刻技术(ILT)中更准确地描述掩模图案,不可避免地会有更精细的网格表示形式,从而导致大尺寸的掩模表示和沉重的计算成本。在这项工作中,我们提出了一种快速卷积方法,称为基于基数展开(CBE)的卷积方法,以解决由密集卷积引起的计算问题。 CBE方法的过程可以细化为:1)在某些基本函数下,从精细网格表示到粗网格表示的投影蒙版和核矩阵,类似于DCT或小波变换。由膨胀系数形成的这个矩阵可以看作是原始大矩阵在粗网格上的投影。 2)在粗网格上进行掩码和核卷积; 3)通过插值法恢复细网格上的卷积结果。基集的选择可以是任意的。在本文中,我们使用1)线性基函数比较卷积精度和计算成本。 2)离散余弦基函数; 3)在1-D和2-D条件下,针对不同的精细和粗糙矩阵尺寸比n,基于K-L变换的基函数。此外,讨论了三次样条插值函数的定量插值误差。在航空影像计算的数值验证中,与传统的卷积方法相比,该新方法具有几乎相同的有效性,并且运行速度提高了10倍〜20倍。 CBE方法将在掩模优化中显示出巨大的有效性和效率。

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