代码搜索:IP软核

找到约 10,000 项符合「IP软核」的源代码

代码结果 10,000
www.eeworm.com/read/466212/7041110

m ip_07_06.m

% MATLAB script for Illustrative Problem 7.6. echo on SNRindB1=0:2:15; SNRindB2=0:0.1:15; M=16; k=log2(M); for i=1:length(SNRindB1), smld_err_prb(i)=cm_sm41(SNRindB1(i)); % simulated error ra
www.eeworm.com/read/466212/7041112

m ip_07_04.m

% MATLAB script for Illustrative Problem 7.4 mapping=[0 1 3 2 7 6 4 5]; % for Gray mapping M=8; E=1; sequence=[0 1 0 0 1 1 0 0 1 1 1 1 1 1 0 0 0 0]; [e]=cm_dpske(E,M,mapping,sequence); % e
www.eeworm.com/read/466212/7041113

m ip_07_02.m

% MATLAB script for Illustrative Problem 7.2. echo on T=1; M=8; Es=T/2; fc=6/T; % carrier frequency N=100; % number of samples delta_T=T/(N-1); t=0:delta_T:T; u0=sqrt(2*Es/T)*
www.eeworm.com/read/466212/7041114

m ip_07_07.m

% MATLAB script for Illustrative Problem 7.7. echo on Tb=1; f1=1000/Tb; f2=f1+1/Tb; phi=pi/4; N=5000; % number of samples t=0:Tb/(N-1):Tb; u1=cos(2*pi*f1*t); u2=cos(2*pi*f2*t); % Assu
www.eeworm.com/read/466212/7041115

m ip_07_12.m

% MATLAB script for Illustrative Problem 12, Chapter 7. echo on alpha=0.4; T=1/4800; t=[-3*T:1.001*T/100:3*T]; x=sinc(t./T).*(cos(pi*alpha*t./T)./(1-4*alpha^2*t.^2/T^2)); pause % Press any key t
www.eeworm.com/read/463748/7175932

m ip_06_04.m

% MATLAB script for Illustrative Problem 6.4. echo on Length=101; Fs=10000; W=2000; Ts=1/Fs; n=-(Length-1)/2:(Length-1)/2; t=Ts*n; h=2*W*sinc(2*W*t); % The rectangular windowed versio
www.eeworm.com/read/463748/7175933

m ip_06_05.m

% MATLAB script for Illustrative Problem 5, Chapter 6. echo on p=0.99; N=1000; d=5; % The filter is described by the vectors A and B below... A=[1 -2*p p^2]; B=(1-p)^2; for i=1:N, [white_n
www.eeworm.com/read/463748/7175934

m ip_06_06.m

% MATLAB script for Illustrative Problem 6, Chapter 6. echo on N=52; noise_var=0.25; sigma=sqrt(noise_var); % standard deviation of the noise for i=1:N, % generate data sequence if
www.eeworm.com/read/463748/7175935

m ip_06_08.m

% MATLAB script for Illustrative Problem 6.8. echo on N=31; T=1; W=1/(2*T); n=-(N-1)/2:(N-1)/2; % the indices for g_T % The expression for g_T is obtained next. for i=1:length(n), g_T(i)=0