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On the Use of Incomplete LU Decomposition as a Preconditioning Technique for Density Fitting in Electronic Structure Computations

机译:在不完全LU分解的情况下用作电子结构计算密度配合的预处理技术

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Incomplete factorization preconditioners combined with Krylov subspace accelerators are currently among the most effective methods for iteratively solving large systems of linear equations. In this paper we consider the use of a dual threshold incomplete LU factorization (ILUT) preconditioner for the iterative solution of the linear equation systems encountered when performing electronic structure calculations that involve density fitting. Two questions are addressed, how the overall performance of the ILUT method varies as a function of the accuracy of the preconditioning matrix, and whether it is possible to make approximations to the original matrix on which the LU decomposition is based and still obtain a good preconditioner. With respect to overall performance both computational and memory storage requirements are considered, while in terms of approximations both those based on numerical and physical arguments are considered. The results indicate that under the right circumstances the ILUT method is superior to fully direct approaches such as singular value decomposition.
机译:与Krylov子空间加速器相结合的不完全分解检测器目前是迭代地解决大型线性方程系统的最有效方法之一。在本文中,我们考虑使用双阈值不完全LU分解(ILUT)预处理器的用于执行涉及密度配件的电子结构计算时遇到的线性方程系统的迭代解。解决了两个问题,如何以预处理矩阵的准确性的函数而变化的整体性能,以及是否有可能对LU分解的原始矩阵进行近似,仍然获得良好的预处理器。关于整体性能,考虑计算和存储器存储要求,而在考虑基于数值和物理参数的近似值的同时。结果表明,在适当的情况下,ILUT方法优于完全直接的方法,如奇异值分解。

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