资源列表
PSO_TSP
- PSO粒子群算法解决TSP的MATLAB源码-Matlab source code of PSO_TSP
chap6
- 求解过程中,由于几何模型发生变化而导致区域网格改变时会出现几何结构的连续性问题。本章中,我们举两个例子——流道中由于不同尺寸孔板引起额外压力损失问题是稳态几何连续性的一个例子。从概念来看,这个问题与第5章贝纳尔问题中通过Rayleigh数进行的变量连续性没什么不同。第二个例子是液体中悬浮的乳胶颗粒的干膜。在这个问题中,考虑了两个移动前缘;一个通过坐标变换,另一个通过光滑界面模型。该技术对于之前模拟该问题采用的移动弱项方法有所改进。-Solving process, due to geometry
Rayleigh-approximation
- 该程序主要用于计算瑞利散射条件下,雷达接收到的粒子散射场的大小。-The codes are used to generate the field and then calculate the far-field scattered field collected by the radar.
mf
- test1: a simple example for optical flow: 1 take the camera man picture for example 2 move it with subpixels (interpolate to get the result) 3 optical flow to estimate the motion test2-7 simple examples for picture rotation and translations
ADLAnh
- data hiding-data hiding................................................
MATLABABCv2
- Matlab based Artificial Bee colony algorithm implementation. It s the newest version with all the supportive files.
tarea-herramienta-de-corte-robotica
- calculate the movement of a robot arm
Spowerhellph
- 短路潮流计算软件帮助系统,可以配配合短路潮流计算软件使用可直接使用。 -The short-circuit power flow calculation software help system can be equipped with the short-circuit the trend calculation software can be used directly.
Uzcmmgzips
- 使用matlab程序源码读取迷宫图象文件,并进行处理,成功走出了迷迷宫.此程序源码只能准确绘出只有一条路径的任意复杂迷宫 可直接使用。 -Matlab program source code to read the maze of image files, and processed successfully out of the fans maze. This program source code can only be accurately drawn to a path of arb
tidu
- 针对mean shift 跟踪方法中存在的光照变化不稳定问题, 提出了基于梯度特征与彩色 特征相融合的mean shift 跟踪方法。首先分别提取目标的梯度特征和彩色特征,利用多尺度的相似度 计算方法进行特征的匹配,然后通过最大化相似度对目标进行跟踪。通过物体和人体等运动目标的跟 踪,验证了改进的跟踪算法在光照变化情况下的鲁棒性优于原有的算法,显著降低了跟踪位置误差。-The instability of the light changes in the mean shift tra
zhuiganfa
- 追赶法是适用于三对角矩阵的线性方程组求解的方法,并不适用于其他类型矩阵。-Pursuit method for solving tridiagonal matrix of linear equations, does not apply to other types of matrix.
DangleTraackB
- DBF结合单脉冲一维角度跟踪 DBF结合单脉冲一维角度度跟踪DBF结合单脉冲一维角度跟踪,已通过测试。 -DBF combined with single-pulse one-dimensional point of view to track a the DBF combination of single-pulse one-dimensional point of view the degree of tracking DBF combined with single-pulse one
