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A Mixed Model for Loss Ratio Analysis

Published online by Cambridge University Press:  29 August 2014

M. Y. El-Bassiouni*
Affiliation:
Department of Statistics and Insurance, Faculty of Commerce, Kuwait University, Kuwait.
*
Department of Insurance and Statistics, Faculty of Commerce, P.O. Box 5486 Safat, 13055, Kuwait.
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Abstract

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The model introduced may be treated as a mixed two-way analysis of variance with fixed company effects and random time effects. Further, the risk volumes are integrated into the model in such a way that the unexplained variance is inversely proportional to the risk volume of each company. The proposed model is used to analyze loss ratio data from the general insurance market in Kuwait. The maximum likelihood estimates of the structural parameters are obtained. These estimates are then used to compute the loss ratios and solvency margins for the four domestic insurance companies.

Type
Workshop
Copyright
Copyright © International Actuarial Association 1991

References

Harville, D.A. (1977) Maximum likelihood approaches to variance component estimation and to related problems. Journal of the American Statistical Association 72, 320338.CrossRefGoogle Scholar
Henderson, C. R. (1973) Maximum likelihood estimation of variance components. Unpublished Manuscript.Google Scholar
Hunter, R. (1980) Flucutation reserves — simulation of German method for calculating fluctuation reserves. General Insurance Conference, Cambridge, available by the Institute of Actuaries' Office.Google Scholar
Patterson, H.D. and Thompson, R. (1971) Recovery of inter-block information when block sizes are unequal. Biometrika 58, 545554.CrossRefGoogle Scholar
Ramlau-Hansen, H. (1982) An application of credibility theory to solvency margins — some comments on a paper by G.W. De Wit and W.M. Kastelijn. ASTIN Bulletin 13, 3745.CrossRefGoogle Scholar
Sundt, B. (1979) An Insurance model with collective seasonal random factors. Mitteilungen der Vereinigung schweizerischer Versicherungsmathematiker, 5764.Google Scholar
Wit, B.W. de and Kastelijn, W. M. (1980) The solvency margin in non-life insurance companies. ASTIN Bulletin 11, 136144.CrossRefGoogle Scholar