• 就是说开始减少高斯(磁场单位)。

    That is to say, it is starting to decrease in its gauss (unit of magnetic measurement).

    youdao

  • 高斯混合噪音计算了单门限系统和门限阵列信息

    It is obtained that Gaussian mixture noise can improve the information transmission through the array.

    youdao

  • 高斯-牛顿误差最小六维观测转化元数,作为观测一部分,显著减少了直接使用EKF计算

    Gauss-Newton error minimization is used to transform six-dimentional reference vector to quaternion as a part of observations for EKF, which significantly reduces the computational requirement.

    youdao

  • 最后通过定义一个特殊累积提取加性高斯有色噪声中的方向角、多普勒频率

    A special four order cumulant was defined to extract DOAs and Doppler frequencies from additive Gaussian colored noise.

    youdao

  • 算法可以直接应用系统非线性模型当中,并且不需考虑系统噪声噪声是否高斯白噪声,都得到很好的滤波效果。

    It could be directly applied to the nonlinear model of the initial system, and could get good filtering result whether the system noise or measured noise was Gaussian or not.

    youdao

  • 文中用逼近线性变换法,设计用于圆度高斯数字逼近滤波器,并给出了零相移的递归滤波算法,计算小,计算效率高,易于实现。

    A series of Gaussian digital approximation filters used in roundness measurement were designed on the basis of approximation method and bilinear transformation.

    youdao

  • 文中导出四种情况下刚度矩阵简化计算公式,这些公式对应高斯积分算法节省计算工作94—98%。

    Simplified formulae for computing the stiffness matrices in four cases are derived, which, compared with corresponding Gauss integration algorithm, can cut 94-98% computing time.

    youdao

  • 针对加性高斯有色噪声背景下线性调频信号估计问题,引入高统计提出了一种基于四阶累积方法

    For the problem of parameter estimation of one dimensional and two dimensional chirp signal in additive colored Gaussian noise, a new method based on fourth-order cumulant is proposed.

    youdao

  • 椭圆高斯光束横坐标中引入复数偏移推广为偏心椭圆高斯光束。

    The generalization of an elliptical Gaussian beam is presented by introducing a complex shift in the transverse coordinates.

    youdao

  • 采用高斯积分模拟小麦每日光合同化呼吸消耗物质转化形成生物

    Daily total canopy photosynthetic rate was simulated by Gauss integration, and total biomass was subtracting respiration and transformation from it.

    youdao

  • 广义惠更斯菲涅耳衍射积分推导出的传输方程详细研究了复宗盖尔·高斯光束及其传输特性

    The elegant Laguerre-Gaussian (L-G) beams and their propagation properties are studied in detail using the propagation equation derived from the generalized Huygens-Fresnel diffraction integral.

    youdao

  • 词汇汉语连续语音识别实验结果表明:高斯模糊聚类使高斯减少25%识别率提高0.15%。

    The experimental results on large vocabulary continuous Mandarin speech recognition show when the number of Gaussians is reduced by 25%, the recognition accuracy increases by 0.15%.

    youdao

  • 基础上进行分析,从而计算机模拟出了四种噪声信道对应高斯分布拉普拉斯分布离散信号信息传输

    On this basis, transinformations for discrete signals of Gauss and Laplace distribution in channels with four noise patterns are simulated.

    youdao

  • 对四阶累混合波达方向矩阵进行特征分解,可实现有色高斯噪声背景空域信号空间估计

    We can estimate two dimensional spatial spectra of sources in colour Guassian noises by eigen decomposing the matrix.

    youdao

  • 由于累积高斯噪声干扰不敏感,从而提高估计分辨性能

    Because the fourth order cumulant is insensitive to Gaussian noise or interference, the performance of the estimates can be increased.

    youdao

  • 文章提出一种横向激发任意线偏振高斯光束光束场模与传统任意线偏振高斯光束具有相同的源场区,满足自由空间无源场的场方程。

    The author bring forward a Gaussian optical beam in a transverse-linearly-polarized state, the expression of its module is the same as the scalar Gaussian beam.

    youdao

  • 有些基于互累积准则算法能够分离超高斯、亚高斯高斯信号混合信号。

    Some cross-cumulant-based algorithms can't recover sources from the mixtures of super-Gaussian, sub-Gaussian and Gaussian signals.

    youdao

  • 本文所得结果具有广泛的意义,因为正弦高斯光束双曲正弦高斯光束复宗正弦高斯光束均可视为其特例。

    The results show it is significant that sine-Gaussian beams, sinh-Gaussian beams and elegant sine-Gaussian beams can be regarded as the special cases of elegant sinh-Gaussian beams.

    youdao

  • 本文所得结果具有广泛的意义,因为正弦高斯光束双曲正弦高斯光束复宗正弦高斯光束均可视为其特例。

    The results show it is significant that sine-Gaussian beams, sinh-Gaussian beams and elegant sine-Gaussian beams can be regarded as the special cases of elegant sinh-Gaussian beams.

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定