资源列表
haarcascade_frontalface_default
- 利用python中的opencv库,实现人脸识别的xml文件(The use of Python Library in opencv, XML file for face recognition.)
数字图像处理Matlab
- IHS变换和加权平均两种方法对图像进行处理,内附有实验数据(IHS transform and weighted average two methods of image processing, with experimental data)
OpenGL 3D场景漫游
- 基于VC_的OpenGL三维动画仿真及场景漫游的实现以VC作为开发环境,利用OpenGL技术开发,来实现三维动画的仿真效果和场景漫游(Based on VC_ OpenGL 3D animation simulation and scene roaming realization, take VC as the development environment, uses the OpenGL technology development, realizes the three-dimension
rytpg
- Including the generalized cross-correlation function GCC time delay estimation, Target can be extracted in a picture you want, Iterative self-organizing data analysis.
L-System
- 通过L-system实现对真实感图形的绘制,其中包括光照、纹理 等要素的实现。(Through the realization of L-system realistic graphics rendering, including light, texture and other elements of the realization.)
减速器
- 能够用于教学用模型设计,参数化设计等功能,也可用于课程作业的参照。(It can be used in teaching, such as model design, parametric design and so on. It can also be used for reference of curriculum work.)
nsct_toolbox
- 非下采样contourlet是超小波的一种。具有多尺度和多方向性,解决了contourlet变换无平移不变性的缺陷。用于图纹理特征提取和图像融合的效果很好。(Non sampled contourlet is a kind of super wavelet. With multi-scale and multi directional, it solves the defect of Contourlet translation without translation invariance. F
第四次
- 根据协方差的物理意义,计算中国的各个经济中心等(According to the physical meaning of covariance, each economic center of China is calculated)
DCT变换图像压缩
- 基于DCT变换的图像压缩处理,压缩比可自己调整(Image compression processing based on DCT transform)
sift 图像处理
- 图像配准算法 matlab 挺好用的,可以参考一下(Image registration algorithm matlab, very good, you can refer to)
B样条曲线反求_OpenGL环境--数据点加入输出点列
- 三次非均匀B样条曲线反求:给定数据点列,反求控制点,节点向量,按照给定精度,等分参数区间,离散B样条曲线,输出离散点列,模拟真实曲线.此算法包括德布尔-考格斯算法,节点向量算法,反求控制点,以及节点插入技术.对搞图形学的朋友比较有参考作用.(Three non uniform B spline curve in reverse: given data points, reverse control points, node vector, according to the given preci
BLine
- 实现了B曲线的源码,一种新的Bspline反求控制点算法,(Achieved a B-source curve, a new control point Bspline Reverse algorithm)