Effacer les filtres
Effacer les filtres

how can I create cumulative matrix.

2 vues (au cours des 30 derniers jours)
fatema saba
fatema saba le 3 Fév 2015
Commenté : fatema saba le 3 Fév 2015
Hello a question please.
I have matrix P with size (452*500). I want to select random selection with roulette wheel selection. I write something:
r=rand;
c=reshape(p,1,[]);
c1=cumsum(c);
j=find(r<=c1,1,'first');
[j1 j2]=ind2sub(size(p),j);
end
but I want to remove part " c=reshape(p,1,[]);" and create cumulative matrix of p directly without reshaping it to matrix c. How can I do it?
Thank you.

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Stephen23
Stephen23 le 3 Fév 2015
Modifié(e) : Stephen23 le 3 Fév 2015
Something like this? :
r = rand;
jj = find(r<=cumsum(p(:)),1,'first');
[j1,j2] = ind2sub(size(p),jj);
Note I also renamed your variable j, which is also one of names of the inbuilt imaginary unit .
  3 commentaires
Stephen23
Stephen23 le 3 Fév 2015
Modifié(e) : Stephen23 le 3 Fév 2015
This depend on you and what you want your code to do. Read the documentation for cumsum, you will see that it always calculates the sum along one dimension (row, column, etc). Lets have a look at what the documentation says:
  • If A is a vector, then cumsum(A) returns a vector containing the cumulative sum of the elements of A.
  • If A is a matrix, then cumsum(A) returns a matrix containing the cumulative sums for each column of A.
...
  • B = cumsum(A,dim) returns the cumulative sum of the elements along dimension dim. For example, if A is a matrix, then cumsum(A,2) returns the cumulative sum of each row.
So the documentation tells us that if you want a column vector of cumulative sums of each row (or a row of the columns, etc), then the answer to your question is yes, you can do it without reshaping the matrix p first. In every case it is summing only along one dimension, so if you want the cumulative sum over all elements of a matrix, you will have to convert it first to a vector, and probably the neatest way of doing this is using p(:).
fatema saba
fatema saba le 3 Fév 2015
Thank you for your kindness and clear explanation.

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