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Limiting saddlepoint relative errors in large deviation regions under purely Tauberian conditions

Butler, Ronald; Wood, Andrew

Authors

Ronald Butler

Andrew Wood



Abstract

Most theoretical results on the relative errors of saddlepoint approximations in the extreme tails have involved placing conditions on the density/mass function. Checking the validity of such conditions is problematic when density/mass functions are intractable, as is typically the case in important practical applications involving convolved, compound, and first-passage distributions as well as for moment generating functions MGFs that are regularly varying. In this paper, we present novel conditions which ensure the existence of positive finite limiting relative errors for saddlepoint density/mass function and survival function approximations. These conditions, which are rather weak, are expressed entirely in terms of the MGF, hence the description purely Tauberian. We focus mainly on the cases in which there are positive and negative gamma distributional limits (the only other non-degenerate possibility being a Gaussian limit) and we show how to check the new conditions in important classes of models in these two settings.

Citation

Butler, R., & Wood, A. (2019). Limiting saddlepoint relative errors in large deviation regions under purely Tauberian conditions. Bernoulli, 25(4B), 3379-3399. https://doi.org/10.3150/18-BEJ1093

Journal Article Type Article
Acceptance Date Nov 19, 2018
Online Publication Date Sep 25, 2019
Publication Date Sep 25, 2019
Deposit Date Oct 6, 2017
Publicly Available Date Nov 23, 2018
Journal Bernoulli
Print ISSN 1350-7265
Electronic ISSN 1573-9759
Publisher Bernoulli Society for Mathematical Statistics and Probability
Peer Reviewed Peer Reviewed
Volume 25
Issue 4B
Pages 3379-3399
DOI https://doi.org/10.3150/18-BEJ1093
Public URL https://nottingham-repository.worktribe.com/output/1126209
Publisher URL https://projecteuclid.org/euclid.bj/1569398769
Related Public URLs http://www.bernoulli-society.org/index.php/publications/bernoulli-journal/bernoulli-journal-papers

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