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- Gaussian distribution formula 高斯分布公式
- To analyze the performance of this new ESP,the electric field distribution formula is derived by Gaussian electric flux theorem and the superposition principle. 通过与单极芒刺电除尘器和线-板式电除尘器电场的对比分析表明,双极芒刺电除尘器电极间具有更高的电场强度。
- The gaussian distribution is the familiar bell-shaped curve. 高斯分布是常见的钟罩形曲线。
- The noise in Lidar signal is not of Gaussian distribution;(2). (2).;激光雷达信号分布的特点等先验知识无法利用。
- The original energy distribution of a laser beam is Gaussian distribution. 一般雷射光束之能量分布为高斯分布。
- The Normal Distribution Tutorial: A tutorial on the Normal or Gaussian distribution. 常态分布讲解:常态或高斯分布的讲解。
- The Fresnel diffraction formula and the Fourier transforms are used to get the intensity distribution formula. 采用菲涅耳衍射公式和傅里叶变换得出了输出面上的光场的理想计算公式。
- Besides, the comparison of Gaussian distribution and aggregation number distribution of toroids has been processed. 此外;还以高斯分布对复曲面的聚合数分布进行了模拟与比较.
- The current frame subtracts the warping background and filters some gauss noises by Gaussian distribution. 当前帧与校正后背景图像作差得到差分图像。
- Based on the generalized Huygens-Fresnel Principle, the intensity distribution formula of Gaussian-Bessel beams propagating in a turbulent atmosphere is derived. 摘要根据广义惠更斯-菲涅耳原理,推导高斯-贝塞耳光束在湍流大气中传输时光强分布变化规律的理论公式。
- The degree distribution formula also indicates that the kinetic and the topological properties of this network commonly affect the degree distribution evolution. 所以度分布的公式也表明该网络的动力学性质与其拓扑性质共同影响度分布的演化。
- Two basic hypothesizes about sources of non Gaussian distribution and statistically independence are used directly or indirectly in BSS. 在对ICA/BSS方法的评述中,指出串行ICA(基于非高斯性最大化的ICA)和并行ICA,都直接或间接地利用了两个基本假设:源信号的非高斯分布(串行ICA允许有一个源为高斯分布)以及源信号之间互相独立性。
- Discrete convolution is applied to verify that the result of repeated convolution of a distribution function will approach to Gaussian distribution. 以离散迴旋积验证任意分布函数之重覆迴旋积会随重覆次数之增加而趋于常态分布。
- However, price changes actually do not follow Gaussian distributions. 但是价格变得并不服从正态分布。
- The 2D computed temperature by using heat source model of double ellipsoidal Gaussian distribution gives best agreement with the measured value. 利用双椭圆热源分布的数值计算模型和实际检测二维温度场分布结果作为边界条件,获得了整个焊件更宽温度范围和三维温度场分布的在线模拟。
- A improved method using simple instrument to expand Gaussian distribution light field and get large-range homogeneous ideal light field was presented. 提出采用简单器件,将高斯分布光场经再扩展,获得大范围均匀的理想光场的方法;
- The algorithm assumes that the LSF parameter has a GMM Gaussian distribution so that the LSF vector can be quantized using a random Gaussian distribution vector quantization. 假设LSF矢量属于GMM中的某一个G auss ian分布,用G auss ian分布随机矢量的量化方法对LSF矢量进行了量化。
- At first, based on the distributed formula of the temperature of different extent, the isotherm of the plume signals is figured out. 首先,根据不同区域的温度分布公式计算出尾焰的等温线;
- The evolving data streams in the experiments include KDD-CUP'99 and KDD-CUP'98 real data sets and synthetic data sets with changing Gaussian distribution. 实验采用KDD-CUP’99和KDD-CUP’98真实数据集以及变换高斯分布的人工数据集构造进化数据流.
- Using two kinds of different heat source models including Gaussian distribution and double-ellipsoid distribution,the differences of the computation results were compared. 分别采用高斯分布函数、双椭球分布函数两种不同的热源分布模型进行加载,比较两种热源模型下计算出的温度分布情况差异。