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chap4_8m1.m
function [u]=chap4_8m1(u1,u2,u3)
global s
persistent errori error_1
ts=0.001;
if u3==0
errori=0;
error_1=0;
end
s=2; %Selecting Signal Type
if s==1 %Step Signa
chap4_8m2.m
function [u]=chap4_8m2(u1,u2,u3,u4)
global s
persistent w x1 x2 x3 w_1 w_2 w_3
N=300;
C=5;
if u3==0
w=zeros(N+C,1);
w_1=w;
w_2=w;
d_w=w;
end
alfa=0.04;
if s==1
chap4_8m1.m
function [u]=chap4_8m1(u1,u2,u3)
global s
persistent errori error_1
ts=0.001;
if u3==0
errori=0;
error_1=0;
end
s=2; %Selecting Signal Type
if s==1 %Step Signa
chap4_8m2.m
function [u]=chap4_8m2(u1,u2,u3,u4)
global s
persistent w x1 x2 x3 w_1 w_2 w_3
N=300;
C=5;
if u3==0
w=zeros(N+C,1);
w_1=w;
w_2=w;
d_w=w;
end
alfa=0.04;
if s==1
h2m_example_basic.m
%ex_basic How to use the h2m functions on the three basic model types:
% 1. Fully connected HMM 2. Left-right HMM 3. Mixture model
%
% Beware : This is not a real demo, so you should take a
ts_2m_8m.hif
HIF003
--
-- Copyright (C) 1988-1998 Altera Corporation
-- Any megafunction design, and related net list (encrypted or decrypted),
-- support information, device programming or simulation file, an
ts_2m_8m.acf
--
-- Copyright (C) 1988-1998 Altera Corporation
-- Any megafunction design, and related net list (encrypted or decrypted),
-- support information, device programming or simulation file, and any
chap4_8m1.m
function [u]=chap4_8m1(u1,u2,u3)
global s
persistent errori error_1
ts=0.001;
if u3==0
errori=0;
error_1=0;
end
s=2; %Selecting Signal Type
if s==1 %Step Signa