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User Guide to SIMCA Vector Description Displayed matrix Uo is not completely orthogonal to X. The norm of this matrix is usually very small but is used to enhance the predictions of X. Available for OPLS and O2PLS. R2VX Explained fraction of the variation of the X variables, for the selected component. Home | Summary of fit | Component contribution R2VXAdj Explained fraction of the variation of the X variables, adjusted for degrees of freedom, for the selected component. Home | Summary of fit | Component contribution R2VXAdjc um Cumulative explained fraction of the variation of the X variables, adjusted for degrees of freedom. Home | Summary of fit | X/Y overview R2VXcum Cumulative explained fraction of the variation of the X variables. Home | Summary of fit | X/Y overview R2VY Explained fraction of the variation of the Y variables, for the selected component. Home | Summary of fit | Component contribution R2VYAdj Explained fraction of the variation of the Y variables, adjusted for degrees of freedom, for the selected component. Home | Summary of fit | Component contribution R2VYAdjc um Cumulative explained fraction of the variation of the Y variables, adjusted for degrees of freedom. Home | Summary of fit | X/Y overview R2VYcum Cumulative explained fraction of the variation of the Y variables. Home | Summary of fit | X/Y overview RMSEcv Root Mean Square Error, computed from the selected cross validation round. Analyze | RMSECV RMSEE Root Mean Square Error of the Estimation (the fit) for observations in the workset. RMSEP Root Mean Square Error of the Prediction for observations in the predictionset. Predict | Y PS | Scatter Predict | Y PS | Line S2VX Residual variance of the X variables, after the selected component, scaled as specified in the workset. S2VY Residual variance of the Y variables, after the selected component, scaled as specified in the workset. so So is the projection of to onto Y. So contains non-zero entries when the score matrix To is not completely orthogonal to Y. The norm of this matrix is usually very small 506 Home | Loadings | Orth X
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