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- Tripterospermum affine 双蝴蝶
- Tripterospermum chinense (Migo) H. Smith. 双蝴蝶,肺形草
- Tripterospermum chinense H. Smith. 双蝴蝶,肺形草
- Of or relating to the geometry of affine transformations. 仿射几何学的仿射变换式几何学的,与其相关的
- Object, so it can hold any sequence of affine transformations. 对象,因此,它能够保存仿射变换的任何序列。
- In the bounded region, affine stretching is an extremal mapping. 在有界区域上 ,仿射拉伸是极值映射 ;
- Input-output decoupling of Affine Nonlinear Singular Control Systems P. 华东师范大学仿射非线性奇异系统的输入输出解耦。
- This will always be the case for the 33 matrix of an affine transformation. 对于仿射变换的33矩阵而言,情况将总是如此。
- Finally, affine parameters model was utilized to merge the separate regions. 最后运用仿射参数模型进行运动块区域合并。
- C.coerulea Hand.-Mazz.;CFasciculata auct.non Wall.;Tripterosperm affine auct. 拉丁植物动物矿物名Tripterospermum chinenseMigoHSmith[Crawfurdia chinensis Migo;
- The same LM algorithm is used to track the affine deformation parameters of the target. 使用LM优化方法跟踪目标的仿射运动参数。
- The charaters after affine transformation can also be recognized by a dyadic wavelet affine invariant function. 仿射变换后的汉字或其它图像可用多尺度小波的仿射不变函数进行对比识别。
- Class provides the foundation for performing affine transformations on vector drawings, images, and text. 类提供了用于在矢量图形、图像和文本上执行仿射变换的基础。
- A general affine transformation involves translation,scaling and rotation operations in three dimensionalspace. 一般仿射变换涉及3维空间的平移、缩放和旋转操作.
- This paper discribes the method of graphing space geometry by affine transformation. 用仿射变换的方法图解空间几何问题对,在图解圆与椭圆之间的转换过程中确定长短轴是解题的关键。
- Abstract A method for estimating 3D space face pose was proposed based on affine transformation and linear regression. 摘要提出了一种由仿射变换关系到线性回归的3D人脸空间姿态估计方法。
- Based on the complex function theory,the stress field was achieved by affine transformation. 文中的应力场是借助于仿射变换的方法通过复变应力函数得到的。
- Based on this result, we develop a three-factor affine model and deduce the formula for pricing bonds. 由此我们建立了一个三因子仿射模型,并给出债券的定价公式。
- This paper presents a model predictive control algorithm for affine nonlinear systems. 摘要本文提出一个用于仿射非线性系统的模型预测控制算法。
- The method is practical and robust as a result of multimodality.And it is also useful for solving affine parameters. 该算法大大提高了跟踪与模板更新的鲁棒性,同时也是一种在仿射空间进行运动参数搜索的实用方法。