• Using a powerful Matrix-geometric method, the stationary probability distribution for the system states is obtained.

    通过使用强大的矩阵几何方法,可以获得平稳系统状态概率分布

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  • Method for computing the element restoring force, rather than the stiffness matrix, is the most important factor that determines the accuracy of a geometric nonlinear finite element problem.

    几何非线性单元精度主要决定单元恢复计算方法刚度矩阵对单元精度影响很小。

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  • In calculation, this method USES the same stiff matrix, and only to renew the load vectors, which means it will reflect the geometric nonlinear effect in the load vectors' iteration.

    计算格式使用同一刚度矩阵需要不断更新荷载矢量荷载矢量的迭代反映几何非线性效应

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  • By using the matrix geometric solution method, we derive the explicit expressions for steady-state probability vector.

    利用矩阵几何方法导出系统稳态概率向量明显表达式

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  • The sensitivity matrix was then decomposed by singular value decomposition (SVD) method, and the relationship between the surface geometric errors and the uncertainty parameters was formulated.

    采用矩阵奇异分解原理,对曲面最佳适配的灵敏度矩阵进行分解,得到不确定参数测点随机误差关系表达式。

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  • Using the quasi-birth-and-death process method, we derive the equilibrium condition of the system and the matrix-geometric solution of the steady-state probability vectors.

    通过拟生灭过程方法求出系统稳态平衡条件稳态概率向量矩阵几何,并给出了系统一些性能指标和数值结果。

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  • Using the quasi-birth-and-death process method, we derive the equilibrium condition of the system and the matrix-geometric solution of the steady-state probability vectors.

    通过拟生灭过程方法求出系统稳态平衡条件稳态概率向量矩阵几何,并给出了系统一些性能指标和数值结果。

    youdao

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