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what is the meaning of this error, "??? Undefined function or method 'Restart' for input arguments of type 'char' when using Matlab?

2 vues (au cours des 30 derniers jours)
what is the meaning of this error, "??? Undefined function or method 'Restart' for input arguments of type 'char' when using Matlab?
  6 commentaires
ELISHA ANEBI
ELISHA ANEBI le 8 Juil 2023
This code is not ploting any graph as expected. Please what do you think is wrong?
Image Analyst
Image Analyst le 8 Juil 2023
It plots what you told it to plot. If you're plotting the wrong things, then probably your equations are wrong.

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Sandeep Mishra
Sandeep Mishra le 10 Juil 2023
Hello ELISHA,
I tried running your commented code and found some different issue in your while loop.
Your code is running out of Root_array range, which is giving me error, you can stop that by checking width of Root_array as below
while (f<width(Root_array) && Root_array(f,1)==0 && Root_array(f,2)==0)
f=f+1;
end
while (f1<width(Root_array) && Root_array(f1,1)~=0)
f1=f1+1;
end
I also found that you are getting no plot in figure 1 and figure 2 because the plot inputs are empty (0×1 or 1×0 size)
Unstable =Rev_value(1,Rev_value_Cr:length(Rev_value))
unstable = 1×0 empty double row vector
Root_array(Rev_value_Cr:length(Rev_value),2)
Root_array = 0×1 empty double column vector
You can debug your code to fix these issues.
  1 commentaire
ELISHA ANEBI
ELISHA ANEBI le 11 Juil 2023
Sandeep Mishra,
Thank you for your input. I copied the code you sent and replaced mine but it didn't still work. Please find below my equations and necessary parameters. I am ploting bifurcation graph- "Force of infection" against the "basic reproduction no Rev".
Please help me plot this graph.
% The Matlab Codes for the forward bifurcation diagram
Rev_value=0.018:0.01:4;
Root_array=zeros (length (Rev_value), 2);
qI=0.001923; qA=0.00000004013; etaA=0.1213; etaQ=0.003808; w=0.5925;
Lambda=0.1598643e-7; theta=0.022;
delta=0.125; mu=0.01119; pi=0.464360344; deltaQ=6.847e-4; beta=1.086e-1;
qE=1.8113e-4; rhoQ=0.0815; a=0.16255; k=0.15; v1=0.71; v2=0.29;alpha=0.57e-1; deltaI=0.00000000223; rhoA=0.1; rhoI=0.0666666;
c1=mu+v1; c2=1-w; c3=mu+alpha+v2;c4=1-k; c5=qE+delta+mu; c6=rhoA+mu; c7=delta*(1-a); c8=rhoI+qI+deltaI+mu; c9=rhoA+deltaQ+mu;
b1=1-theta;
B=delta*a*c8*c9+c7*k*qI*rhoQ+c8*k*qE*rhoQ;
G=qI*c7*c6+qE*c8*c6;
H1=c2*c5*c6*c8*c9;
H2=c5*c6*c8*c9*(c3*+c1*c2)-(b1*c2+c2*theta)*(c6*c9*c7*pi*beta+pi*G*beta*etaQ+pi*B*beta*etaA);
H3=c5*c6*c8*c9*(c3*c1-v1*v2)*(1-b1*Rev_value)-(c3*theta+c2*v1*theta)*(c6*c9*c7*pi*beta+pi*G*beta*etaQ+pi*B*beta*etaA);
hold on
for i=1:1:length(Rev_value);
Rev=Rev_value(i);
% bifurcation parameter
%Coefficients of quadratic equation H1, H2, H3
p=[H1,H2,H3];
r =roots(p);
len=length(r);
for t=1:1:len

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