Create all combinations of a vector
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Hello,
I need your help to write down the different possible combinations of a vector x used as input for my model.
Basically I have a vector x of i elements that can take the values 0 or 1. The subset of the y last elements of x is "mutually exclusive", which means that only 1 of those elements at a time can have a value of 1.
For every value of x I run my model and then save the results in a file.
Until now I have nested as many for-loops as there are elements in x to depict every case, but I suspect there must be a much more convenient way to do this!
So basically I would like to improve following code (it's ok if you laugh seeing it! :P) and add the mutually exclusive condition:
%% Create the x vector for all possible combinations
for m=1:2
x(1)=m-1;
for n=1:2
x(2)=n-1;
for o=1:2
x(3)=o-1;
for p=1:2
x(4)=p-1;
for q=1:2
x(5)=q-1;
for r=1:2
x(6)=r-1;
for s=1:2
x(7)=s-1;
for t=1:2
x(8)=t-1;
for u=1:2
x(9)=u-1;
for v=1:2
x(10)=v-1;
%% Run the model
[A,B]=Zmultipleexecution(x);
%% Save the results in a .mat file
file=['C:\Users\XXX\Documents\',num2str(m)-1,num2str(n)-1,num2str(o)-1,num2str(p)-1,num2str(q)-1,num2str(r)-1,num2str(s)-1,num2str(t)-1,num2str(u)-1,num2str(v)-1];
save(file);
end
end
end
end
end
end
end
end
end
end
Thank you very much!
4 comentarios
Adam Danz
el 15 de Jun. de 2020
Code from OP with indentation to see its structure.
%% Create the x vector for all possible combinations
for m=1:2
x(1)=m-1;
for n=1:2
x(2)=n-1;
for o=1:2
x(3)=o-1;
for p=1:2
x(4)=p-1;
for q=1:2
x(5)=q-1;
for r=1:2
x(6)=r-1;
for s=1:2
x(7)=s-1;
for t=1:2
x(8)=t-1;
for u=1:2
x(9)=u-1;
for v=1:2
x(10)=v-1;
%% Run the model
[A,B]=Zmultipleexecution(x);
%% Save the results in a .mat file
file=['C:\Users\XXX\Documents\',num2str(m)-1,num2str(n)-1,num2str(o)-1,num2str(p)-1,num2str(q)-1,num2str(r)-1,num2str(s)-1,num2str(t)-1,num2str(u)-1,num2str(v)-1];
save(file);
end
end
end
end
end
end
end
end
end
end
Adam Danz
el 15 de Jun. de 2020
So, x is a 1x10 vector of 1s and 0s, is that correct?
Lenilein
el 15 de Jun. de 2020
Adam Danz
el 15 de Jun. de 2020
Then my answer should be what you're looking for.
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