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A Geometrical Framework for Covariance Matrices of Continuous and Categorical Variables

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  • Graziano Vernizzi
  • Miki Nakai

Abstract

It is well known that a categorical random variable can be represented geometrically by a simplex. Accordingly, several measures of association between categorical variables have been proposed and discussed in the literature. Moreover, the standard definitions of covariance and correlation coefficient for continuous random variables have been extended to categorical variables. In this article, we present a geometrical framework where both continuous and categorical data are represented by simplices and lines in a high-dimensional space, respectively. We introduce a function whose direct minimization leads to a single definition of covariance between categorical–categorical, categorical–continuous, and continuous–continuous data. The novelty of this general approach is that a single space and a single distance function can be used for describing both continuous and categorical data. It thus provides a unified geometrical description of the measure of association, in particular between categorical and continuous data. We discuss virtues and limitations of such a geometrical framework and provide examples with possible applications to sociological surveys.

Suggested Citation

  • Graziano Vernizzi & Miki Nakai, 2015. "A Geometrical Framework for Covariance Matrices of Continuous and Categorical Variables," Sociological Methods & Research, , vol. 44(1), pages 48-79, February.
  • Handle: RePEc:sae:somere:v:44:y:2015:i:1:p:48-79
    DOI: 10.1177/0049124114543243
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    References listed on IDEAS

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    1. Kuklinski, James H. & West, Darrell M., 1981. "Economic Expectations and Voting Behavior in United States House and Senate Elections," American Political Science Review, Cambridge University Press, vol. 75(2), pages 436-447, June.
    2. Peter Schönemann & Robert Carroll, 1970. "Fitting one matrix to another under choice of a central dilation and a rigid motion," Psychometrika, Springer;The Psychometric Society, vol. 35(2), pages 245-255, June.
    3. Hayes, Kevin, 2011. "A Geometrical Interpretation of an Alternative Formula for the Sample Covariance," The American Statistician, American Statistical Association, vol. 65(2), pages 110-112.
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