代码搜索:M

找到约 10,000 项符合「M」的源代码

代码结果 10,000
www.eeworm.com/read/342845/11996155

m freqz_m.m

function [db,mag,pha,grd,w] = freqz_m(b,a); % Modified version of freqz subroutine % ------------------------------------ % [db,mag,pha,grd,w] = freqz_m(b,a); % db = Relative magnitude in dB comp
www.eeworm.com/read/153071/12061857

m m_connect.m

function [out] = m_connect(in); % apply m_connectivity to the one pixel wide image % 2/12 [w,h] = size(in); out=in; for i=3:h-2 for j = 3:w-2 if out(i,j) == 1 & out(i+1,j+1)
www.eeworm.com/read/153052/12063459

m freqs_m.m

function [db,<mark>m</mark>ag,pha,w]=freqs_<mark>m</mark>(b,a,w<mark>m</mark>ax) %s域频率响应计算freqs的改进版本 %w<mark>m</mark>ax希望获得的最大频率响应;b直接型滤波器分子系数;a直接型滤波器分母系数 %<mark>m</mark>ag为[0 w<mark>m</mark>ax]区间的绝对值;pha为[0 w<mark>m</mark>ax]区间的相位响应;w为[0 w<mark>m</mark>ax]区间内的500个频率样本数组 w=[0:1:500]*w<mark>m</mark>ax/500; H=fre ...
www.eeworm.com/read/153052/12063509

m conv_m.m

function [y,ny] = conv_m(x,nx,h,nh) %改进的卷积运算 % Modified convolution routine for signal processing % -------------------------------------------------- % [y,ny] = conv_m(x,nx,h,nh) % y = convoluti
www.eeworm.com/read/153052/12063594

m freqz_m.m

function [db,<mark>m</mark>ag,pha,grd,w]=freqz_<mark>m</mark>(b,a) %z域数字频率响应计算freqz的改进版本 %b直接型滤波器分子系数;a直接型滤波器分母系数 %db为[0:pi]之间的相对振幅;<mark>m</mark>ag为[0 pi]区间的绝对值;pha为[0 pi]区间的相位响应; %grd为[0 pi]区间的群延迟;w为[0 pi]区间内的501个频率样本数组 [H,w]=freqz( ...
www.eeworm.com/read/341586/12076705

m m_sequence.m

function mseq=m_sequence(fbconnection) n=length(fbconnection); N=2^n-1; register=[zeros(1,n-1) 1]; mseq(1)=register(n); for i=2:N newreg
www.eeworm.com/read/151608/12188027

m m_henon.m

function [x,y]=m_henon(n) x=zeros(1,n);y=zeros(1,n); for k=1:n-1 x(k+1)=1+y(k)-1.4*x(k)^2; y(k+1)=0.3*x(k); end
www.eeworm.com/read/339892/12198146

m m_sequence.m

%----m序列发生器(简单型码序列发生器-----simple shift register generator) % _____参见《FPGA设计及应用》褚振勇编 西安电子科技大学出版社 close clear connections=[1 0 0 1 1];% 移位寄存器系数n+1=5 r-->l N=len
www.eeworm.com/read/151561/12200838

m m2.m

si=3:0.01:10; mf=5; ni=0.3; y=3*mf^2*(mf+1); z=si/ni; plot(z,y*z)
www.eeworm.com/read/151561/12200904

m freqs_m.m

function [db,mag,pha,w]=freqs_m(b,a,wmax); % Computation of s-domain frequency response:Modified version % ------------------------- % [db,mag,pha,w]=freqs_m(b,a,wmax); % db=Relative magnitude in