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Description: This m-file displays the time waveform for the Gaussian pulse function and the first and second derivatives of the Gaussian pulse function for a 0.5 nanosecond pulse width. Other values of pulse widths may be used by changing fs,t,t1. The program uses the actual first and second derivative equations for the Gaussian pulse waveforms. The first derivative is considered to be the monocycle or monopulse as discussed in most papers. The second derivative is the waveform generated from a dipole antenna used in a UWB system. Other information is contained in the file.
-This m-file displays the time waveform for the Gaussian pulse function and the first and second derivatives of the Gaussian pulse function for a 0.5 nanosecond pulse width. Other values of pulse widths may be used by changing fs, t, t1. The program uses the actual first and second derivative equations for the Gaussian pulse waveforms. The first derivative is considered to be the monocycle or monopulse as discussed in most papers. The second derivative is the waveform generated from a dipole antenna used in a UWB system. Other information is contained in the file.
Platform: |
Size: 1919 |
Author: 王琼 |
Hits:
Description: Rotating shafts experience a an elliptical motion called whirl. It is important to decompose this motion into a forward and backward whil orbits. The current function makes use of two sensors to generate a bi-directional spectrogram. The method can be extended to any time-frequency distribution
%
% compute the forward/backward Campbell/specgtrogram
%
% INPUT:
% y (n x 2) each column is measured from a different sensor
% ///////
% __
% |s1| y(:,1)
% |__|
% __
% / \\ ________|/
% | | | s2 |/ y(:,2)
% \\____/ --------|/
%
% Fs Sampling frequnecy
%
% OUTPUT:
% B spectrogram/Campbel diagram
% x x-axis coordinate vector (time or Speed)
% y y-axis coordinate vector (frequency [Hz])
-an experience a elliptica l motion called whirl. It is important to decomp Rose this motion into a forward and backward whil orbits. The current function makes use of two se nsors to generate a bi-directional spectrogra m. The method can be extended to any time-freque ncy distribution% compute the forward / backw ard Campbell / specgtrogram% INPUT : % y (n x 2) each column is measured from a differen t sensor ///////%%% __ | s1 | y (:, 1)% | __ |%% __ / \\ ________|/% | | | s2 | / y (:, 2)% \\ ___/_____/20__ --------|/% Fs Sampling frequnecy %% OUTPUT : spectrogram% B / Campbel diagram% x x-axis coor dinate vector (time or Speed)% y y-axis coordin ate vector (frequency [Hz])
Platform: |
Size: 62056 |
Author: yupenghui |
Hits:
Description: design LP,HP,B S digital Butterworth and Chebyshev
filter. All array has been specified internally,so user only need to
input f1,f2,f3,f4,fs(in hz), alpha1,alpha2(in db) and iband (to specify
the type of to design). This program output hk(z)=bk(z)/ak(z),k=1,2,...,
ksection and the freq.-design LP, HP, B S digital Butterworth and Chebyshev filter. A 'll array has been specified internally. so user only need to input f1, f2, f3, f4, fs (in hz). alpha1. alpha2 (in db) and iband (to specify the type of t o design). This program output hk (z) = bk (z) / ak (z), k = 1,2 ,..., ksection and the freq.
Platform: |
Size: 2057 |
Author: 李松 |
Hits:
Description: %radon transform
clear all
%
N=800
n=1:N
fs=200
t=n/fs
x1=exp(j*2*pi*(5*t+0.5*5*t.^2))
x2=exp(j*2*pi*(5*t+0.5*15*t.^2))
x=x1+x2
%N=length(x)
% ambifunb(x )
%*****************************************RAT
naf=ambifunb(x)
htl(abs(naf))
% [wh,rho,theta]=htl(abs(naf))
colormap([0,0,0])
% xlabel( 极半径 )
% ylabel( 角度 )
%**************************************%找出峰值点的坐标,计算初始频率和调频斜率(正确)
%找出峰值点的坐标
b=max(max(wh))
[u,a]=find(wh>=0.8*b)
Platform: |
Size: 1629 |
Author: abcde |
Hits:
Description: 可以识别字符串是否符合以下文法:
(1)E->TG
(2)G->+TG|—TG
(3)G->ε
(4)T->FS
(5)S->*FS|/FS
(6)S->ε
(7)F->(E)
(8)F->i
Platform: |
Size: 1166 |
Author: xzy |
Hits:
Description: 递归下降分析法
(1)E->TG
(2)G->+TG|—TG
(3)G->ε
(4)T->FS
(5)S->*FS|/FS
(6)S->ε
(7)F->(E)
(8)F->i
Platform: |
Size: 1330 |
Author: suddy |
Hits:
Description: This m-file displays the time waveform for the Gaussian pulse function and the first and second derivatives of the Gaussian pulse function for a 0.5 nanosecond pulse width. Other values of pulse widths may be used by changing fs,t,t1. The program uses the actual first and second derivative equations for the Gaussian pulse waveforms. The first derivative is considered to be the monocycle or monopulse as discussed in most papers. The second derivative is the waveform generated from a dipole antenna used in a UWB system. Other information is contained in the file.
-This m-file displays the time waveform for the Gaussian pulse function and the first and second derivatives of the Gaussian pulse function for a 0.5 nanosecond pulse width. Other values of pulse widths may be used by changing fs, t, t1. The program uses the actual first and second derivative equations for the Gaussian pulse waveforms. The first derivative is considered to be the monocycle or monopulse as discussed in most papers. The second derivative is the waveform generated from a dipole antenna used in a UWB system. Other information is contained in the file.
Platform: |
Size: 2048 |
Author: 王琼 |
Hits:
Description: Rotating shafts experience a an elliptical motion called whirl. It is important to decompose this motion into a forward and backward whil orbits. The current function makes use of two sensors to generate a bi-directional spectrogram. The method can be extended to any time-frequency distribution
%
% compute the forward/backward Campbell/specgtrogram
%
% INPUT:
% y (n x 2) each column is measured from a different sensor
% ///////
% __
% |s1| y(:,1)
% |__|
% __
% / \ ________|/
% | | | s2 |/ y(:,2)
% \____/ --------|/
%
% Fs Sampling frequnecy
%
% OUTPUT:
% B spectrogram/Campbel diagram
% x x-axis coordinate vector (time or Speed)
% y y-axis coordinate vector (frequency [Hz])
-an experience a elliptica l motion called whirl. It is important to decomp Rose this motion into a forward and backward whil orbits. The current function makes use of two se nsors to generate a bi-directional spectrogra m. The method can be extended to any time-freque ncy distribution% compute the forward/backw ard Campbell/specgtrogram% INPUT : % y (n x 2) each column is measured from a differen t sensor ///////%%% __ | s1 | y (:, 1)% | __ |%% __/\ ________|/% | | | s2 |/y (:, 2)% \ ___/_____/20__--------|/% Fs Sampling frequnecy %% OUTPUT : spectrogram% B/Campbel diagram% x x-axis coor dinate vector (time or Speed)% y y-axis coordin ate vector (frequency [Hz])
Platform: |
Size: 61440 |
Author: yupenghui |
Hits:
Description: uC/IP V1 源代码 2003-08-13[摘][码]
....一个自由的TCP/IP协议栈-Phone/IP source code 2003-08-13 V1 [Abstract] [code] ... a free T CP/IP Protocol Stack
Platform: |
Size: 561152 |
Author: zhangdx |
Hits:
Description: design LP,HP,B S digital Butterworth and Chebyshev
filter. All array has been specified internally,so user only need to
input f1,f2,f3,f4,fs(in hz), alpha1,alpha2(in db) and iband (to specify
the type of to design). This program output hk(z)=bk(z)/ak(z),k=1,2,...,
ksection and the freq.-design LP, HP, B S digital Butterworth and Chebyshev filter. A 'll array has been specified internally. so user only need to input f1, f2, f3, f4, fs (in hz). alpha1. alpha2 (in db) and iband (to specify the type of t o design). This program output hk (z) = bk (z)/ak (z), k = 1,2 ,..., ksection and the freq.
Platform: |
Size: 2048 |
Author: 李松 |
Hits:
Description: %radon transform
clear all
%
N=800
n=1:N
fs=200
t=n/fs
x1=exp(j*2*pi*(5*t+0.5*5*t.^2))
x2=exp(j*2*pi*(5*t+0.5*15*t.^2))
x=x1+x2
%N=length(x)
% ambifunb(x )
%*****************************************RAT
naf=ambifunb(x)
htl(abs(naf))
% [wh,rho,theta]=htl(abs(naf))
colormap([0,0,0])
% xlabel( 极半径 )
% ylabel( 角度 )
%**************************************%找出峰值点的坐标,计算初始频率和调频斜率(正确)
%找出峰值点的坐标
b=max(max(wh))
[u,a]=find(wh>=0.8*b)
- Radon transformclear all N = 800 n = 1: N fs = 200 t = n/fs x1 = exp (j* 2* pi* (5* t+ 0.5* 5* t. ^ 2)) x2 = exp ( j* 2* pi* (5* t+ 0.5* 15* t. ^ 2)) x = x1+ x2 N = length (x) ambifunb (x)***************************************** RATnaf = ambifunb (x) htl (abs (naf)) [wh, rho, theta ] = htl (abs (naf)) colormap ([0,0,0]) xlabel (polar radius) ylabel (angle)************************************** to find the coordinates of the peak point, calculating the initial slope of the frequency and FM (right) find the peak point of the coordinates b = max (max ( wh)) [u, a] = find (wh
Platform: |
Size: 1024 |
Author: abcde |
Hits:
Description: S3C2410芯片 嵌入式linux文件系统的移植。包括:
u-boot,file system,thttp。-S3C2410 chip embedded linux file system of the transplant. Including: u-boot, file system, thttp.
Platform: |
Size: 737280 |
Author: liuxin |
Hits:
Description: 可以识别字符串是否符合以下文法:
(1)E->TG
(2)G->+TG|—TG
(3)G->ε
(4)T->FS
(5)S->*FS|/FS
(6)S->ε
(7)F->(E)
(8)F->i-String can be identified with the following grammar: (1) E-
Platform: |
Size: 1024 |
Author: xzy |
Hits:
Description: 递归下降分析法
(1)E->TG
(2)G->+TG|—TG
(3)G->ε
(4)T->FS
(5)S->*FS|/FS
(6)S->ε
(7)F->(E)
(8)F->i
-Recursive drop analysis (1) E-
Platform: |
Size: 1024 |
Author: suddy |
Hits:
Description: 使用MATLAB对DSB-AM进行仿真:双边带幅度调制的过程以及对其中所包含的对信号的频谱分析都可以通过MATLAB中的M语句及相关函数来实现。假如信号m(t)=cos(m)以dsb-am方式调制载波c(t)=cos(20*pi*t),所的信号为y(t),并将采样频率定为 fs=100Hz,则可在MATLAB中设计程序对该幅度调制的结果进行仿真,绘制已调信号波形和频谱分析。-It is a example for DSB-AM based on MATLAB .
Platform: |
Size: 13312 |
Author: 紫雨轩 |
Hits:
Description: 我对一个输入调制信号:采样率FS=1200K,中心频率F0=300K,带宽300K。输入信号为一个[样点数,2]的矩阵,即I,Q两路.
进行频谱搬移,分为I,Q分量两路进行矢量乘法,NCO的设置为FC=300K,t=样点数乘以1/FS,
乘完以后我的频谱上显示竟然信号带宽增加了300K,但是中心频率没有改变,请问各位朋友是哪儿出了问题?谢谢您的阅读和意见-Digital Down Converter for matlab realized, certain design specifications that can be used to know VHDL Programming
Platform: |
Size: 22528 |
Author: Jose |
Hits:
Description: 我对一个输入调制信号:采样率FS=1200K,中心频率F0=300K,带宽300K。输入信号为一个[样点数,2]的矩阵,即I,Q两路.
进行频谱搬移,分为I,Q分量两路进行矢量乘法,NCO的设置为FC=300K,t=样点数乘以1/FS,
乘完以后我的频谱上显示竟然信号带宽增加了300K,但是中心频率没有改变,请问各位朋友是哪儿出了问题?谢谢您的阅读和意见-Digital Down Converter for matlab realized, certain design specifications that can be used to know VHDL Programming
Platform: |
Size: 2048 |
Author: Jose |
Hits:
Description: LL(1)文法分析器~~~包含实验报告
文法为:
*(1) E->TG
*(2) G->+TG
*(3 G->-TG
*(4) G->^
*(5) T->FS
*(6) S->*FS
*(7) s->/FS
*(8) S->^
*(9) F->(E)
*(10) F->i -LL (1) grammar analyzer ~ ~ ~ with experimental report
Platform: |
Size: 471040 |
Author: 杰 |
Hits:
Description: 一个写好的简单的文件系统!该有的都有了!不该有的也差不多了!-Written a simple file system! The others have had! Should some of them almost!
Platform: |
Size: 1703936 |
Author: 杨岳 |
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Description: 不知道如何传文件夹,所以只好传了一个文件,以后再补上。文件系统-don t know how to transfer file fonder,so I only transfer one.
Platform: |
Size: 24576 |
Author: wangjy |
Hits: