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gaussian space     
相关语句
  gauss空间
     In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     本文通过随机空间的映射变换,将其多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,以利用该空间球坐标沿其径向的x2分布特性计算总体失效域上的失效概率。
短句来源
     In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     通过随机空间的映射变换,将多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,利用该空间球坐标沿其径向的χ2分布特性,计算系统失效域上的失效概率。
短句来源
  正态空间
     In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     本文通过随机空间的映射变换,将其多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,以利用该空间球坐标沿其径向的x2分布特性计算总体失效域上的失效概率。
短句来源
     In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     通过随机空间的映射变换,将多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,利用该空间球坐标沿其径向的χ2分布特性,计算系统失效域上的失效概率。
短句来源
  正态空间(
     In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     本文通过随机空间的映射变换,将其多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,以利用该空间球坐标沿其径向的x2分布特性计算总体失效域上的失效概率。
短句来源
     In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     通过随机空间的映射变换,将多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,利用该空间球坐标沿其径向的χ2分布特性,计算系统失效域上的失效概率。
短句来源
  (gauss空间
     In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     本文通过随机空间的映射变换,将其多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,以利用该空间球坐标沿其径向的x2分布特性计算总体失效域上的失效概率。
短句来源
     In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.
     通过随机空间的映射变换,将多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,利用该空间球坐标沿其径向的χ2分布特性,计算系统失效域上的失效概率。
短句来源

 

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      gaussian space
    The stochastic motion is described by a system of stochastic ordinary differential equations driven by Gaussian space-time white noise and the mean-field force as a shift-invariant integral kernel.
          
    We have used a Monte Carlo method to investigate energy migration and transfer between chromophores embedded in Gaussian space.
          
    Energy migration and transfer between chromophores embedded in Gaussian space
          
    A superconducting product wave function is given by Gaussian space components and spin-1 functions polarized in the direction of the applied magnetic field.
          
    A general theory of operators on Boson Fock space is discussed in terms of the white noise distribution theory on Gaussian space (white noise calculus).
          
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    The reliability analysis of submarine structures should be classified as series-system reliability problem with related failure modes.In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.Because there is no need to determine the corˉrelation of failure modes approximately,the precision...

    The reliability analysis of submarine structures should be classified as series-system reliability problem with related failure modes.In this paper,all the failure surfaces are transferred into Gaussian Space by transforˉmation of random variable space,and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area.Because there is no need to determine the corˉrelation of failure modes approximately,the precision of analysis can be raised.Examples for two types of submarine structures indicate that this method is practical and useful,and is especially suitable for reliability analysis with highly non-linear failure surfaces.

    潜艇结构可靠性分析属于多个相关模式串联的系统可靠性分析问题。本文通过随机空间的映射变换,将其多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,以利用该空间球坐标沿其径向的x2分布特性计算总体失效域上的失效概率。由于无须进行模式间相关性的近似分析,因而提高了系统失效概率的计算精度。潜艇两种耐压结构的可靠性分析算例表明:该方法实用性强,操作性好,精度较高,对于有高度非线性失效面方程的可靠性计算问题有很强的适应性。

    In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area. Because there is no need to determine the correlation of failure modes approximately, the precision of analysis can be raised. Examples for two structures indicate that this method is practical and useful, and is especially suitable...

    In this paper, all the failure surfaces are transferred into Gaussian Space by transformation of random variable space, and thus the properties of chi-square-distribution in Gaussian Space can be utilized to calculate the failure probability in the total failure area. Because there is no need to determine the correlation of failure modes approximately, the precision of analysis can be raised. Examples for two structures indicate that this method is practical and useful, and is especially suitable for the reliability analysis with highly non-linear failure surfaces.

    通过随机空间的映射变换,将多个失效模式的失效面统一变换到随机独立的标准正态空间(Gauss空间)内,利用该空间球坐标沿其径向的χ2分布特性,计算系统失效域上的失效概率。由于无需进行模式间相关性的近似分析,因而提高了系统失效概率的计算精度。两种结构的可靠性分析算例表明,该方法实用性强,操作性好,精度较高,对于有高度非线性失效面方程的可靠性计算问题亦有很强的适应性。

    This paper proposes an improved bit-allocation algorithm for anisotropic Gaussian filter to smooth a noisy image without blurring the edges.A median filter is used to smooth salt and pepper noise,then the variance of gray-scale is used to adjust Gaussian space coefficient,so the image edge can be automatically detected.The results indicate that the image edge can be well preserved and the noise can be got rid of completely through this improved algorithm.

    为了抑制更好的抑制噪声保留边缘信息,提出了一种各向异性高斯滤波的改进方法,该方法先用中值滤波去除椒盐噪声,再利用灰度共生矩阵的惯性矩特征值调整滤波器的长轴尺度,实现各向异性高斯滤波.实验证明,本文所提出的改进方法,在噪声抑制和边缘保持方面优于各向异性高斯滤波器.

     
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