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Isoefficiency Analysis of Parallel QMR-Like Iterative Methods and its Implications on Parallel Algorithm Design

机译:并行QMR相似迭代方法的等效率分析及其对并行算法设计的启示

摘要

A specific problem arising out of electrostatics is taken as an example to demonstrate the process of, firstly, transforming a physical problem into a mathematical model and, secondly, its numerical solution by generating a system of linear equations via finite difference approximations. The resulting nonsymmetric sparse linear system is solved by a class of iterative methods that is defined by taking the Quasi-Minimal Residual(QMR) method as a typical member. A performance model called isoefficiency concept is used to analyze the behavior of such methods implemented on parallel distributed memory computers with two-dimensional mesh topology. The isoefficiency concept is employed to compare two different mappings of data to processors as well as to give hints how QMR-like iterative methods should be designed with respect to parallel computing.
机译:以静电产生的特定问题为例,以演示以下过程:首先将物理问题转换为数学模型,其次通过有限差分近似生成线性方程组,将其数值解。通过以准最小残差(QMR)方法为典型成员定义的一类迭代方法,可以解决由此产生的非对称稀疏线性系统。使用称为等效率概念的性能模型来分析在具有二维网格拓扑的并行分布式存储计算机上实现的此类方法的行为。等效率概念用于比较两个不同的数据到处理器的映射,并提示如何针对并行计算设计类似QMR的迭代方法。

著录项

  • 作者

    Bücker H. Martin;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-31 15:54:34

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