代码搜索:光学传递函数

找到约 1,669 项符合「光学传递函数」的源代码

代码结果 1,669
www.eeworm.com/read/490407/6455971

m exp4_17.m

% exp4_17.m clear close all clc %求系统的开环传递函数num3,den3 num1=[16.7 0]; den1=conv([0.85 1],conv([0.25 1],[0.0625 1])); [num2,den2]=cloop(num1,den1); num3=10*num2; den3=den2; [z,p,k]=tf2zp(num3,d
www.eeworm.com/read/490407/6455980

m exp4_6_.m

clc clear hold off %系统传递函数为G(s)=1/[(s^2+0.1s+5)(s^3+2s^2+3s+4)] num=1; den=conv([1 0.1 5],[1 2 3 4]); %绘制系统的阶跃响应曲线 t=0:0.1:40; y=step(num,den,t); t1=0:1:40; y1=step(num,den,t1); plot(t,y,'r
www.eeworm.com/read/488257/6500215

m exp4_17.m

% exp4_17.m clear close all clc %求系统的开环传递函数num3,den3 num1=[16.7 0]; den1=conv([0.85 1],conv([0.25 1],[0.0625 1])); [num2,den2]=cloop(num1,den1); num3=10*num2; den3=den2; [z,p,k]=tf2zp(num3,d
www.eeworm.com/read/488257/6500224

m exp4_6_.m

clc clear close all %系统传递函数为G(s)=1/[(s^2+0.1s+5)(s^3+2s^2+3s+4)] num=1; den=conv([1 0.1 5],[1 2 3 4]); %绘制系统的阶跃响应曲线 t=0:0.1:40; y=step(num,den,t); t1=0:1:40; y1=step(num,den,t1); plot(t,y,'
www.eeworm.com/read/487268/6517515

m exp4_17.m

% exp4_17.m clear close all clc %求系统的开环传递函数num3,den3 num1=[16.7 0]; den1=conv([0.85 1],conv([0.25 1],[0.0625 1])); [num2,den2]=cloop(num1,den1); num3=10*num2; den3=den2; [z,p,k]=tf2zp(num3,d
www.eeworm.com/read/487268/6517524

m exp4_6_.m

clc clear close all %系统传递函数为G(s)=1/[(s^2+0.1s+5)(s^3+2s^2+3s+4)] num=1; den=conv([1 0.1 5],[1 2 3 4]); %绘制系统的阶跃响应曲线 t=0:0.1:40; y=step(num,den,t); t1=0:1:40; y1=step(num,den,t1); plot(t,y,'
www.eeworm.com/read/483854/6596343

m q618.m

%《MATLAB在电子信息课程中的应用》章例618程序 % 线性控制系统的模型描述和转换 % 电子工业出版社出版 陈怀琛 吴大正 高西全合著 2001年10月 % 由状态空间转换为传递函数 clear, disp('输入状态方程系数矩阵A,B,C,D') disp('输入A=(书上取[0.2844,0.5828,0.4329,0.5298;0.4692,0.4235,0.225
www.eeworm.com/read/481281/6647107

m mohukongzi.m

%模糊控制实例系统为20/(1.6s^2+4.4s+1) %被控系统建模 num=20; %系统的分子 den=[1.6 4.4 1];%系统的分母 [a1,b,c,d]=tf2ss(num,den);%传递函数转换到状态空间 x=[0;0]; %系统参数 T=0.01;h=T;N=1000; R=ones(1,N);%参考输入 %定义输入和输出变量及隶属度函数 a=newfi
www.eeworm.com/read/478650/6712560

m ex0616.m

% Ex0616 根据传递函数绘制系统的nyquist曲线和nichols图 num=1; den1=[conv([1 1],[1 2]),0]; G1=tf(num,den1) den2=[conv([1 1],[1 2])]; G2=tf(num,den2) den3=[1 1 0]; G3=tf(num,den3) nyquist(G1,'r',G2,'
www.eeworm.com/read/401335/11559263

m exp4_17.m

% exp4_17.m clear close all clc %求系统的开环传递函数num3,den3 num1=[16.7 0]; den1=conv([0.85 1],conv([0.25 1],[0.0625 1])); [num2,den2]=cloop(num1,den1); num3=10*num2; den3=den2; [z,p,k]=tf2zp(num3,d