• 最终通过求解线性方程得到曲线

    Finally, the fairing curve can be obtained by solving a linear system of equations.

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  • 实现了一个网络环境下求解线性方程并行求解器。

    A paralleling solver to the linear equations in net environment is realized.

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  • 文章利用近似矩阵构造了一类求解线性方程并行迭代算法

    In this paper, a parallel iterative algorithm for linear equations is given by approximating inverse of a matrix.

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  • 本文分析了基于空间求解线性方程一维投影算法最速下降法

    The one-dimension projection algorithm, which is the steepest descent based, base d on residual space for solving linear equations is analyzed in this paper.

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  • 分析基于空间求解线性方程一维投影算法下降和最小剩余法。

    The one-dimension projection algorithm, which is the steepest descent method, based on residual space for solving linear equations is analyzed in this paper.

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  • 分层快速多极算法用来加速迭代求解线性方程的矩阵向量乘积的运算。

    Multilevel fast multipole method is used to fast calculate the matrix-vector product when we solve the linear system by iterative method.

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  • 迭代求解线性方程组时,迭代矩阵半径估计及其收敛性分析非常重要的。

    For solving the linear system with the iterative method, it is very important to estimate the spectral radius of the iterative matrices and give the convergence analysis.

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  • 本文赋权二部施行矩阵各种运算基础上,进一步给出求解线性方程的方法。

    On the base of a variety of calculation of matrix used on the empowering bipartite graph, the solutions are further given to solve the linear equations in the graphs.

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  • 研究线性参数系统模型的识别问题通过引入求解线性方程松驰思想,构造了一类新的迭代识别算法。

    A nonlinear system parameters identification problem is investigated in this paper by introducing a relaxation method used for solving the linear equations of the system.

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  • 通过串行程序中功能模块计算工作量分析,线性方程组的求解该串行程序中占有75%的工作量,并行求解线性方程组是论文的一项主要工作

    The analysis of computation time of different subroutines shows that the solution of linear equations account for 75 percent of total workload and it is also the main work in the study.

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  • Linpack基准设计用来求解大规模稠密线性方程

    The Linpack benchmark is designed to solve a large number of dense linear equations.

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  • 这个测试非常适合用来测试那些运行科学应用程序模拟的计算机,因为它们都要某些步骤试图线性方程进行求解

    This test is well suited to speed test computers meant to run scientific applications and simulations because they tend to solve linear equations at some stage or another.

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  • 使用范例下面例子求解一个线性方程Ax =b,矩阵规模为3 * 3,最后出了残差的范式。

    Example of Use. The following simple example solves a 3x3 linear system Ax=b and computes the

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  • 因为其借助计算机快速求解方程优点,使得线性方程一定精度内的求解成为可能

    The high capacity of fast solving equations of the computer make it possible to solve nonlinear equations within a certain precision.

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  • 并联机床运动学正解问题由于涉及求解线性方程组问题而不易解决。

    It's difficult to solve the direct kinematics of a parallel machine tool (PMT), which will deal with nonlinear function set.

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  • 船舶空间就是计算船舶某种给定载况下的三个浮态参数归结求解一个隐式线性方程

    The ship's floating condition calculation aims at obtaining three floating condition parameters. It can be attributed to solving an implicit nonlinear equation group.

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  • 这样步骤意味着同时求解两个线性方程

    Such steps mean the simultaneous solution of either two linear equations.

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  • 根据可逆冷轧生产特点,采用通过直接求解线性方程确定负荷分配方法

    Based on the rolling feature and practice of reversible cold mill, a new calculating method to determine the load distribution is put forward by means of nonlinear equations.

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  • 常数变易作为求解线性方程解法给出的。

    Method of leading variables is method of solving linear ordinary differential equation of first order.

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  • 差分后形成的大型七对角线性方程组,采用逐次线松弛方法迭代求解

    Line Successive Over Relaxation (LSOR) can be used as one method to calculate the equation.

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  • 这些方法结果成功应用各类线性方程求解

    These methods and results have been successfully applied to various of nonlinear equations.

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  • 求解开普勒方程可用逐次逼近法,这种方法还推广线性方程求解问题中。

    Kepler s equations can be solved with the gradual approach, which can be further extended to the solution of the non-linear equations.

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  • 首先概述有限元接触理论求解线性方程方法

    Firstly, the contact theory and the method of solving nonlinear equations are summarized.

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  • 提出一个新的迭代公式此公式求解线性方程收敛速度,且绝对收敛。

    This paper presents a new iterative formula by which the solution of nonlinear equation had rapid and absolute convergence.

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  • 精细积分求解刚性方程常系数线性方程显示出很大的优越性柔性体系动力学方程求解提供新的工具。

    The time precise integration method shows great advantage to solve the stiff equations and nonlinear equations, it provides a new computation way for the research of flexible multibody system.

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  • 方法适用分析一般线性方程求解稳定性

    The above methods also apply to analysis of calculating stability for general linear equation group.

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  • 不动点迭代方法求解线性方程近似一个重要方法其应用非常广泛

    Fixed-Point Iteration method is an important technique to solve nonlinear equations for calculating approximate roots and applied widely.

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  • 不动点迭代方法求解线性方程近似一个重要方法其应用非常广泛

    Fixed-Point Iteration method is an important technique to solve nonlinear equations for calculating approximate roots and applied widely.

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