资源列表
color bar
- 主要是交通行业的时空矩阵的3维热力图表达方式,不同检测器与不同时间段的流量作为颜色的第三位导入,热力图调整颜色表达更清晰(mianly used for transportation engineering. It can plot the three dimension of the real traffic situation, including different temporal and spatial. the code also can modify the parameter
Matlab程序
- 该例程包含了所有电力电子的仿真实例,是学习电力电子的好平台(The routine contains all the power electronics simulation example, is a good platform for learning power electronics)
PyWENO-master
- 一个开源的代码包,weno格式,写的好不错,可以下载看看(An open source code package, WENO format, written in good, good, you can download to see)
ELM_MatlabClass
- 极限学习机只需要设置网络的隐层节点个数,在算法执行过程中不需要调整网络的输入权值以及隐元的偏置,并且产生唯一的最优解,因此具有学习速度快且泛化性能好的优点。该程序是用于极限学习机分类。(Extreme learning machine only need to set the number of hidden nodes of the network, the algorithm execution process does not need to adjust the input weight
RLS
- MATLAB关于最小二乘法和递推最小二乘法程序(MATLAB on the least squares method and recursive least squares procedures)
CCPSO_ISM_test
- 粒子群算法,智能优化算法,信息共享粒子群算法-ccpso-ism(Particle swarm optimization algorithm CCPSO-ISM)
Inverse Problem
- 计算反求实例,提供了三个计算实例,在不同的情况下对比了点估计和蒙卡方法的差别。(Calculation examples, provide three examples in different situations between the point estimation and Monte Carlo method difference.)
5_flow_code_1.zip
- This code was made to draw streamline passing through bump located in the right-belowed of 2-d rectangular field. User can execute the file by typing ./Make_and_Execute ,and then you can have your own outfile changing input parameters prescribed in
线面夹角
- fortran编写的计算线和面的夹角,输入文件读取三个点X1,X2,X3(确定一个面),源代码给定线的法向量NL,程序求解线和面的夹角
optimizationmodels-master
- 运用Gurobi的c++\python 的API接口求解custock, locationtransport, multicommodity, warehouse 问题, 源至github.(Use Gurobi's c++\python interface of API to solve custock, locationtransport, multicommodity, warehouse problems)
GS
- C语言编写,列主元高斯法求解线性方程组代码,方程组系数以文本形式导入程序,可计算多阶方程,识别运算时间,算法时间复杂度较低。(C language, column principal component Gauss method for solving linear equations, code equations, coefficients in text form into the program, can calculate multiple equations, identify th
Desktop
- Fluent UDF cavitation