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说明: 通过MATLAB绘制出正弦函数、余弦函数及指数函数的曲线,并加以标注(MATLAB curve drawn by a sine function, cosine, and exponential functions, and to be marked)
- 2015-03-16 16:29:24下载
- 积分:1
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idma_1
IDMA matlab file algorithm
- 2010-07-14 15:43:00下载
- 积分:1
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FDTD_s2Ferria
FDTD挡板传输的电压,波形计算并进行傅里叶变换(fdtd compute )
- 2011-07-07 16:00:06下载
- 积分:1
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Lyapunov_v2_matlab
matlab, this is Ljapunov (variant2) function for linear unstable system
- 2012-08-04 21:18:08下载
- 积分:1
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n_r
用牛顿法计算简单电力系统潮流,可以计算任意节点的潮流。自动输出中间的相关结果,并且有清晰可以操作的界面(Newton s method with a simple power flow)
- 2011-12-13 14:22:39下载
- 积分:1
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matlabPIDsimulition
先进PID控制方法的matlab仿真刘金坤编著有编好的程序很有用
(Advanced PID control method for a matlab simulation program has made very good use)
- 2009-04-01 21:03:59下载
- 积分:1
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RLS_RF3
应用自适应的干扰对消法去除高斯白噪声,程序中给出两种相关噪声产生的方法,第一种只有一个噪声是随机产生的,第二种两个噪声都是随机产生的。程序中给出了去噪后信噪比和均方差的增益。(Application of adaptive interference cancellation method to remove Gaussian white noise, the procedure given in the relevant noise generated by the two methods, first there is only one noise is randomly generated, the second two are randomly generated noise. Denoising process is given after the signal to noise ratio and mean square deviation of the gain.)
- 2008-06-04 16:16:36下载
- 积分:1
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MATLAB-Flow-calculation-courseware
本文件是MATLAB编写潮流程序的课件,该课件简单易懂,特别适合电力系统潮流计算初学者自学。(This document is prepared by the trend of the program MATLAB courseware, the courseware easy to understand, especially for power flow calculation for beginners learning.)
- 2014-10-24 17:35:34下载
- 积分:1
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Image_Compress
使用小波技术对图像进行压缩和解压过程,并且通过模拟信道测试计算其PSNR,通过Matlab2009a测试。(Using wavelet methods compress and decompress the image, and testing through analog channels to calculate the PSNR, by Matlab2009a test.)
- 2010-08-16 20:46:50下载
- 积分:1
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two_ray_model
Modelo de dos rayos de Andrea Goldsmith (figura 2.5, según expresión
2.12)
f = 0.9 frecuencia en GHz
landa = 0.3/f en m
R = -1 coeficiente de reflexión en tierra
ht = 10 altura del transmisor en m
hr = 2 altura del receptor en m
Gt = 1
Gr = 1
Pt = 1
d=10:.1:100000
phase_diff = 4*pi*ht*hr./(landa*d) aproximación
Pr = Pt*((landa/(4*pi))^2)*((abs((sqrt(Gt)./d) + (R*sqrt(Gr).*(exp(-sqrt(-1)*phase_diff)))./d)).^2)
Pr = Pt*((landa/(4*pi))^2)*(1./d).*((abs((sqrt(Gt)) + (R*sqrt(Gr).*(exp(-sqrt(-1)*phase_diff))))).^2)
figure(1), clf,
plot((d),10*log10(Pr/max(abs(Pr))))
grid
xlabel( log_1_0(d) )
ylabel( Potencia recibida (dBm) )
- 2010-02-08 06:31:54下载
- 积分:1