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A Class of Generalized Approximate Inverse Solvers for Unsymmetric Linear Systems of Irregular Structure Based on Adaptive Algorithmic Modelling for Solving Complex Computational Problems in Three Space Dimensions

机译:基于自适应算法建模的不规则结构非对称线性系统的一类广义近似逆解。

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A class of general inverse matrix techniques based on adaptive algorithmic modelling methodologies is derived yielding iterative methods for solving unsymmetric linear systems of irregular structure arising in complex computational problems in three space dimensions. The proposed class of approximate inverse is chosen as the basis to yield systems on which classic and preconditioned iterative methods are explicitly applied. Optimized versions of the proposed approximate inverse are presented using special storage (k-sweep) techniques leading to economical forms of the approximate inverses. Application of the adaptive algorithmic methodologies on a characteristic nonlinear boundary value problem is discussed and numerical results are given.
机译:推导了一类基于自适应算法建模方法的通用逆矩阵技术,产生了迭代方法,用于解决在三个空间维度上由于复杂的计算问题而引起的不规则结构的非对称线性系统。选择拟议的近似逆类作为产生系统的基础,在该系统上显式应用经典和预处理的迭代方法。使用特殊存储(k扫频)技术介绍了拟议的近似逆的优化版本,从而产生了近似逆的经济形式。讨论了自适应算法在特征非线性边值问题上的应用,并给出了数值结果。

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