Linear Discriminant Analysis project data on sum of eigenvectors
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I know in Linear Discriminant Analysis (LDA) we project the data on a specific eigenvector or a matrix of eigenvectors to reduce the dimensionality of the data and separate classes. But what happens if we project the data on some vector V
that is the sum of a couple of the eigenvectors, or the sum of 1 eigenvector and some random vector? Will that be useful?
linear-algebra machine-learning dimensional-analysis
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I know in Linear Discriminant Analysis (LDA) we project the data on a specific eigenvector or a matrix of eigenvectors to reduce the dimensionality of the data and separate classes. But what happens if we project the data on some vector V
that is the sum of a couple of the eigenvectors, or the sum of 1 eigenvector and some random vector? Will that be useful?
linear-algebra machine-learning dimensional-analysis
add a comment |
up vote
0
down vote
favorite
up vote
0
down vote
favorite
I know in Linear Discriminant Analysis (LDA) we project the data on a specific eigenvector or a matrix of eigenvectors to reduce the dimensionality of the data and separate classes. But what happens if we project the data on some vector V
that is the sum of a couple of the eigenvectors, or the sum of 1 eigenvector and some random vector? Will that be useful?
linear-algebra machine-learning dimensional-analysis
I know in Linear Discriminant Analysis (LDA) we project the data on a specific eigenvector or a matrix of eigenvectors to reduce the dimensionality of the data and separate classes. But what happens if we project the data on some vector V
that is the sum of a couple of the eigenvectors, or the sum of 1 eigenvector and some random vector? Will that be useful?
linear-algebra machine-learning dimensional-analysis
linear-algebra machine-learning dimensional-analysis
asked Nov 25 at 22:37
Sreten Jocić
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