资源列表
imf_fft - 副本
- 计算每个IMF分量及最后一个剩余分量residual与原始信号的相关性;计算各IMF的方差贡献率;绘制FFT频谱(The correlation between each IMF component and the last residual component residual and the original signal is calculated; the variance contribution rate of each IMF is calculated; and the FFT
node33
- 基于IEEE33节点的一份利用yalmip建模求优化的一份程序,很难得(A program based on IEEE33 nodes that uses yalmip modeling for optimization is very difficult to obtain)
C_Class_Vehicle_EPS_Simulink
- 以自动控制原理和汽车理论课程为理论基础,建立了汽车二自由度系统模型以及电动助力转向系统模型,并进行仿真。利用已经建好的车辆模型和转向系统模型,还可以实现与CarSim等车辆动力学软件实现联合仿真。(Based on the theory of automatic control and automobile theory, a vehicle two degree of freedom system model and an electric power steering system mode
仿真
- 四旋翼无人机的动力学模型建模验证分析,模拟运行飞行器的飞行过程。(Four, the dynamic model of rotor UAV is modeled and analyzed to simulate the flight process of the running aircraft.)
四旋翼飞行器动力学建模与简单控制
- 基于Simulink的四旋翼飞行器动力学建模与简单PID控制.有相关文献。(Dynamic modeling and simple PID control of four rotor aircraft based on Simulink.)
Theodorsen -vg
- 通过西奥道森气动力模型求解气动力,并通过v-g法求解颤振速度与颤振频率(Solve the aerodynamic force through the Theodorsen aerodynamic model and solve the flutter velocity and flutter frequency through the v-g method)
程序
- 利用分步傅里叶方法求解非线性薛定谔方程,超连续谱光斑(Split step Fourier method for solving nonlinear Schrodinger equation and supercontinuum light spot)
GAN
- MATLAB中GAN网络实现,包含minist测试数据(GAN realization on MATLAB)
TDOA-SGA
- 本程序完成了利用标准遗传算法计算基于TDOA定位的移动通信基站定位算法,采用二进制编码过程,选择、交叉、变异操作等,运行结果分析都包含在内。(This program uses standard genetic algorithm to calculate the location algorithm of mobile communication base station based on TDOA positioning, using binary encoding process, sel
DOMFluor
- 用Matlab编写的三维荧光分析工具,可以导入、浏览荧光数据,自动进行平行因子分析,并确定荧光组分。 (The DOMFLOUR toolbox (decomposition routines for Excitation Emission Matrices) has been developed to support and extend the application of PARAFAC to fluorescence Excitation Emission Matrix (EEM) da
刘金琨智能控制(第3版)仿真程序
- 刘金琨 智能控制 第三版的matlab实例程序(实用版本)(Liu JInKun <Intelligent control> Third edition of the book program)
火星转移轨道matlab仿真
- 以二体问题为模型,从地球发射航天器探索火星,途中需经过一次无动力金星借力,寻找最优(总速度增量最小)的发射时间窗口和飞行时间,并绘制地球到金星的Pork-Chop发射能量等高线图。发射时间窗口为2023—2033年,总飞行时间不得大于2年。(Taking the two body problem as the model to explore Mars from the earth, it is necessary to seek an unpowered Venus transit force