Iterative Scaling in Curved Exponential Families

Iterative Scaling in Curved Exponential Families

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Article ID: iaor201526539
Volume: 42
Issue: 3
Start Page Number: 832
End Page Number: 847
Publication Date: Sep 2015
Journal: Scandinavian Journal of Statistics
Authors: ,
Keywords: statistics: distributions
Abstract:

The paper describes a generalized iterative proportional fitting procedure that can be used for maximum likelihood estimation in a special class of the general log‐linear model. The models in this class, called relational, apply to multivariate discrete sample spaces that do not necessarily have a Cartesian product structure and may not contain an overall effect. When applied to the cell probabilities, the models without the overall effect are curved exponential families and the values of the sufficient statistics are reproduced by the MLE only up to a constant of proportionality. The paper shows that Iterative Proportional Fitting, Generalized Iterative Scaling, and Improved Iterative Scaling fail to work for such models. The algorithm proposed here is based on iterated Bregman projections. As a by‐product, estimates of the multiplicative parameters are also obtained. An implementation of the algorithm is available as an R‐package.

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