代码搜索:Generates
找到约 10,000 项符合「Generates」的源代码
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www.eeworm.com/read/354492/10350045
c io20_3.03.c
// #include
#include
/**
** generates:
stanl@john:d.ch20 313 : a.out < alice_emma
characters actually read: 52
characters actually read: 60
characters actual
www.eeworm.com/read/161765/10378694
m digitizg.m
%digitizg.m This prog generates the C/A code and digitizes it
function code2=digitizg(n,fs,offset,svnum);
%code - gold code
%n - number of samples
%fs - sample frequecncy in Hz
%offset - delay t
www.eeworm.com/read/279420/10439236
m altes.m
function x=altes(N,fmin,fmax,alpha) ;
%ALTES Altes signal in time domain.
% X=ALTES(N,FMIN,FMAX,ALPHA) generates the Altes signal in
% the time domain.
%
% N : number of points in time
% FMIN
www.eeworm.com/read/279420/10439249
m fmconst.m
function [y,iflaw] = fmconst(N,fnorm,t0);
%FMCONST Signal with constant frequency modulation.
% [Y,IFLAW] = FMCONST(N,FNORM,T0) generates a frequency modulation
% with a constant frequency fnorm.
%
www.eeworm.com/read/279420/10439257
m anastep.m
function y=anastep(N,ti);
%ANASTEP Analytic projection of unit step signal.
% Y=ANASTEP(N,TI) generates the analytic projection of a
% unit step signal.
%
% N : number of points.
% TI : starting pos
www.eeworm.com/read/161171/10440840
m altes.m
function x=altes(N,fmin,fmax,alpha) ;
%ALTES Altes signal in time domain.
% X=ALTES(N,FMIN,FMAX,ALPHA) generates the Altes signal in
% the time domain.
%
% N : number of points in time
% FMIN
www.eeworm.com/read/161171/10440901
m fmconst.m
function [y,iflaw] = fmconst(N,fnorm,t0);
%FMCONST Signal with constant frequency modulation.
% [Y,IFLAW] = FMCONST(N,FNORM,T0) generates a frequency modulation
% with a constant frequency fnorm.
%
www.eeworm.com/read/161171/10440913
m anastep.m
function y=anastep(N,ti);
%ANASTEP Analytic projection of unit step signal.
% Y=ANASTEP(N,TI) generates the analytic projection of a
% unit step signal.
%
% N : number of points.
% TI : starting pos
www.eeworm.com/read/424063/10504137
m bdt_f527.m
% MATLAB script that generates the probability of error versus the signal to noise ratio
initial_snr=0;
final_snr=15;
snr_step=1;
tolerance=1e-7; % Tolerance used for the integration
min
www.eeworm.com/read/352501/10546154
c sweepde.c
//SweepDE.c Generates a sweeping sinusoid using a difference equation
#include
#define two_pi (2*3.1415926) //2*pi
#define two_14 16384 //2^14
#define T