代码搜索:模拟方案
找到约 10,000 项符合「模拟方案」的源代码
代码结果 10,000
www.eeworm.com/read/148259/12479603
m u_chb2ap.m
function [b,a] = u_chb2ap(N,As,Omegac);
% 未归一化的切比雪夫-2型模拟低通滤波器原型
% --------------------------------------------------------
% [b,a] = u_chb2ap(N,As,Omegac);
% b = Ha(s) 分子多项式的系数
% a = Ha(s) 分母
www.eeworm.com/read/334356/12608935
tbk form1.tbk
Type=Exe
Form=..\模拟信~1\Form1.frm
Reference=*\G{00020430-0000-0000-C000-000000000046}#2.0#0#C:\WINNT\system32\stdole2.tlb#OLE Automation
IconForm="Form1"
Startup="Form1"
Command32=""
Name="Projec
www.eeworm.com/read/334356/12608938
001 form1.001
Type=Exe
Form=..\模拟信~1\Form1.frm
Reference=*\G{00020430-0000-0000-C000-000000000046}#2.0#0#C:\WINNT\system32\stdole2.tlb#OLE Automation
IconForm="Form1"
Startup="Form1"
Command32=""
Name="Projec
www.eeworm.com/read/238111/13905978
cpp cbus.cpp
#include "stdafx.h"
#include "Bus.h"
#include "CBus.h"
#include "BusDlg.h"
int g_stime,g_etime;//模拟过程起始时间
int g_ctime; //当前时间
int g_runbus; //运行的汽车数量
CCriticalSection g_cirtical;
class C
www.eeworm.com/read/237777/13930927
m afd_elip.m
function [b,a] = afd_elip(Wp,Ws,Rp,As);
% 椭圆型模拟低通滤波器设计
% --------------------------------------
% [b,a] = afd_elip(Wp,Ws,Rp,As);
% b = Ha(s) 分子的系数
% a = Ha(s) 分母的系数
% Wp = 以弧度/秒为单位的通带边缘频率; Wp
www.eeworm.com/read/237777/13931017
m afd_butt.m
function [b,a] = afd_butt(Wp,Ws,Rp,As);
% 巴特沃斯型模拟低通滤波器设计
% -----------------------------------------
% [b,a] = afd_butt(Wp,Ws,Rp,As);
% b = Ha(s) 分子的系数
% a = Ha(s) 分母的系数
% Wp = 以弧度/秒为单位的通带边缘频率
www.eeworm.com/read/237777/13931138
m u_chb2ap.m
function [b,a] = u_chb2ap(N,As,Omegac);
% 未归一化的切比雪夫-2型模拟低通滤波器原型
% --------------------------------------------------------
% [b,a] = u_chb2ap(N,As,Omegac);
% b = Ha(s) 分子多项式的系数
% a = Ha(s) 分母
www.eeworm.com/read/237777/13931545
m ex031700.m
% 模拟信号
Dt = 0.00005;
t = -0.005:Dt:0.005;
xa = exp(-1000*abs(t));
%
% 连续时间付利叶变换
Wmax = 2*pi*2000;
K = 500; k = 0:1:K;
W = k*Wmax/K;
Xa = xa * exp(-j*t'*W) * Dt;
Xa = real(Xa);
W = [-fliplr(
www.eeworm.com/read/237777/13931669
m ex1a.m
% 模拟信号
Dt = 0.00005;
t = -0.005:Dt:0.005;
xa = exp(-1000*abs(t));
%
% 连续时间付利叶变换
Wmax = 2*pi*2000;
K = 500; k = 0:1:K;
W = k*Wmax/K;
Xa = xa * exp(-j*t'*W) * Dt;
Xa = real(Xa);
W = [-fliplr(