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lyaprosen
Lyapunov exponent for time seires.
- 2012-05-01 18:34:14下载
- 积分:1
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kmga
包含光伏电池模块、MPPT模块、BOOST模块、逆变模块,包含位置式PID算法、积分分离式PID,包含了阵列信号处理的常见算法,MIMO OFDM matlab仿真。( PV modules contain, MPPT module, BOOST module, inverter module, It contains positional PID algorithm, integral separate PID, Contains a common array signal processing algorithm, MIMO OFDM matlab simulation.)
- 2020-09-18 10:27:53下载
- 积分:1
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kk
说明: 基于matlab的激光谐振腔的横模模拟程序,用于模拟激光腔不同参数下的模式(MATLAB program of laser )
- 2011-05-11 20:25:20下载
- 积分:1
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checkgeneralparameters.m
This function is a dialogue which changes the general simulation parameters (the function is called by pressing - Change Basic Geometry Details )
(This function is a dialogue which changes the general simulation parameters (the function is called by pressing- Change Basic Geometry Details )
)
- 2013-09-25 03:32:33下载
- 积分:1
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dct2
本代码是利用matlab实现dct变换,作用后效果可见
(This code is to use matlab to achieve dct transform, the role can be seen after the effect )
- 2009-12-23 19:33:45下载
- 积分:1
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design
说明: 几个关于matlab界面设计的源程序,希望能对大家有所帮助!(Some on the matlab interface design of the source, hope it' ll help!)
- 2011-03-13 13:56:52下载
- 积分:1
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mlp-sample
multi layer perceptron - MLP sample
- 2012-06-29 22:03:44下载
- 积分:1
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tamura-texture
matlab中Tamura纹理特征的一种提取方法(A method in matlab about Tamura texture feature extraction )
- 2013-10-30 09:40:12下载
- 积分:1
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FDTD
FDTD基本代码,计算电场和磁场时间更新(FDTD basic code, calculate the electric and magnetic time updates)
- 2017-09-26 14:45:27下载
- 积分:1
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HeatTransport
数值方法计算传热问题实例
边长为200×200mm的二维矩形材料内的稳态温度分布。上侧和左侧维持恒壁温;下侧为绝热;右侧为对流换热条件。具体参数为:
材料的导热系数=20w/m• k;
上侧温度t1=100℃
右侧流体温度tf=20℃ 表面传热系数 h分别为1w/m2• k和100 w/m2• k
左侧温度t2=20℃
下侧绝热(Numerical method to calculate the heat transfer problem instance side of 200 × 200mm rectangular two-dimensional steady-state temperature distribution within the material. On the left side and to maintain constant wall temperature lower side of insulation the right side of the convective heat transfer conditions. Specific parameters are: thermal conductivity of the material = 20w/m • k on the side of the temperature t1 = 100 ℃ right side of the fluid temperature tf = 20 ℃ surface heat transfer coefficient h were 1w/m2 • k and 100 w/m2 • k temperature t2 = 20 ℃ left side of the insulation under)
- 2011-10-13 17:57:16下载
- 积分:1