Consolidating row values from previous column duplicate values.

Hi all,
Is it possible to write a script to make MATLAB look at the first two columns of a matrix, and if there are multiple rows where Column 1 and Column 2 have the same values, to put these rows together and sum the corresponding values of a third column.
An example would be like this;
[a x 2;
a x 3;
b x 4;
a y 5;
b y 6;
b y 7;
c y 8]
and so the script will recognize there are two rows with a in column 1 and x in column 2, so it will put them together and add the values in the third row.
So the output would be like this;
[a x 5;
b x 4;
a y 5;
b y 13;
c y 8]
Forgive my bad formatting of the matrix, but any help will be greatly appreciated!
Kind regards
Willem

2 commentaires

Evan
Evan le 1 Août 2013
Modifié(e) : Evan le 1 Août 2013
Do you only add rows that are adjacent to one another, or would another row, say [a x 6] appended to the bottom of the matrix, also be added to the top two?
No, I have the ability to sort the data and make sure they will be sorted by the first two columns, with the primary sort being on the second column.

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 Réponse acceptée

the cyclist
the cyclist le 1 Août 2013
Modifié(e) : the cyclist le 1 Août 2013
You need the accumarray function:
A = [1 1 3;
1 1 4;
1 1 7;
1 2 1;
1 2 6;
2 3 5;
3 6 4;
3 6 9;
3 6 3];
[Aunique,i,j] = unique(A(:,[1 2]),'rows');
Asum = accumarray(j,A(:,3),[],@sum);
output = [Aunique,Asum]

5 commentaires

Thank you very much for your help!
Would it be possible to ask for an additional tweak to the code, as I looked at the MATLAB help for accumarray but I was unable to resolve this.
How would I modify the code so that the second line of,
Asum = accumarray(j,A(:,3),[],@sum);
Gives me the sum for n columns?
In my case I have 192 additional columns (not just the third column anymore) and I would like to have the 192 columns giving me the sum for all the unique combinations from column 1 and 2.
Thank you very much again for your help!
Here is an example where I expand A to have a few extra columns, but wrote it in a way that should generalize:
A = [1 1 3;
1 1 4;
1 1 7;
1 2 1;
1 2 6;
2 3 5;
3 6 4;
3 6 9;
3 6 3];
A(:,4) = 2*A(:,3);
A(:,5) = 3*A(:,3);
A(:,6) = 5*A(:,3)
[Aunique,i,j] = unique(A(:,[1 2]),'rows')
dataMatrix = A(:,3:end);
dataVector = reshape(dataMatrix,[],1);
[NR,NC] = size(dataMatrix);
rowIndex = repmat(j,[NC 1]);
columnIndex = reshape(repmat(1:NC,[NR 1]),[],1);
B = accumarray([rowIndex columnIndex],dataVector,[],@sum)
The idea here is that you have to reshape the 192-columns in to one long vector for the purposes of accumarray. Then, you accumulate them back into their columns again (using the rowIndex and columnIndex to keep track).
Thank you very much again, this is perfectly what I need. I will study and try to understand this code.
Don't feel bad if accumarray seems confusing. It's doing a pretty complex thing, and I personally never found the documentation for that particular function to be helpful to me.

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Plus de réponses (2)

[a,b,c]=unique(A(:,1:2),'rows','stable')
out=[a accumarray(c,A(:,3))]
Andrei Bobrov
Andrei Bobrov le 2 Août 2013
Modifié(e) : Andrei Bobrov le 2 Août 2013
A = [1 1 3;
1 1 4;
1 1 7;
1 2 1;
1 2 6;
2 3 5;
3 6 4;
3 6 9;
3 6 3]
A(:,end + (1:3)) = randi(10,size(A,1),3);
[a1,ii,ii] = unique(A(:,1:2),'rows');
[i1 j1] = ndgrid(ii,1:size(A,2) - 2);
a2 = A(:,3:end);
out = [a1 accumarray([i1(:),j1(:)],a2(:))];

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