Generalized Linear Model (GLM) Applications for the Exponential Dispersion Model Generated by the Landau Distribution

Author:

Bar-Lev Shaul K.1,Liu Xu23ORCID,Ridder Ad4,Xiang Ziyu2

Affiliation:

1. Faculty of Industrial Engineering and Technology Management, Holon Institute of Technology, Holon 5810201, Israel

2. School of Statistics and Management, Shanghai University of Finance and Economics, Shanghai 200433, China

3. Yunnan Key Laboratory of Statistical Modeling and Data Analysis, Yunnan University, Kunming 650091, China

4. School of Business and Economics, Vrije University of Amsterdam, 1081 HV Amsterdam, The Netherlands

Abstract

The exponential dispersion model (EDM) generated by the Landau distribution, denoted by EDM-EVF (exponential variance function), belongs to the Tweedie scale with power infinity. Its density function does not have an explicit form and, as of yet, has not been used for statistical aspects. Out of all EDMs belonging to the Tweedie scale, only two EDMs are steep and supported on the whole real line: the normal EDM with constant variance function and the EDM-EVF. All other absolutely continuous steep EDMs in the Tweedie scale are supported on the positive real line. This paper aims to accomplish an overall picture of all generalized linear model (GLM) applications belonging to the Tweedie scale by including the EDM-EVF. This paper introduces all GLM ingredients needed for its analysis, including the respective link function and total and scaled deviance. We study its analysis of deviance, derive the asymptotic properties of the maximum likelihood estimation (MLE) of the covariate parameters, and obtain the asymptotic distribution of deviance, using saddlepoint approximation. We provide numerical studies, which include estimation algorithm, simulation studies, and applications to three real datasets, and demonstrate that GLM using the EDM-EVF performs better than the linear model based on the normal EDM. An R package accompanies all of these.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference21 articles.

1. Independent tough identical results: The Tweedie class on power variance functions and the class of Bar-Lev and Enis on reproducible natural exponential families;Int. J. Stat. Probab.,2020

2. Jørgensen, B. (1997). The Theory of Dispersion Models, Chapman and Hall.

3. Bar-Lev, S.K. (2023). The Exponential Dispersion Model Generated by the Landau Distribution—A Comprehensive Review and Further Developments. Mathematics, 11.

4. Dunn, P.K., and Smyth, G.K. (2001, January 2–6). Tweedie Family Densities: Methods of Evaluation. Proceedings of the 16th International Workshop on Statistical Modelling, Odense, Denmark.

5. Series Evaluation of Tweedie Exponential Dispersion Model Densities;Dunn;Stat. Comput.,2005

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