On a general storage problem and its approximating solution

Author:

Smith N. M. H.,Yeo G. F.

Abstract

A GI/G/r(x) store is considered with independently and identically distributed inputs occurring in a renewal process, with a general release rate r(·) depending on the content. The (pseudo) extinction time, or the content, just before inputs is a Markov process which can be represented by a random walk on and below a bent line; this results in an integral equation of the form gn+1(y) = ∫ l(y, w)gn(w) dw with l(y, w) a known conditional density function. An approximating solution is found using Hermite or modified Hermite polynomial expansions resulting in a Gram–Charlier or generalized Gram–Charlier representation, with the coefficients being determined by a matrix equation. Evaluation of the elements of the matrix involves two-dimensional numerical integration for which Gauss–Hermite–Laguerre integration is effective. A number of examples illustrate the quality of the approximating procedure against exact and simulated results.

Publisher

Cambridge University Press (CUP)

Subject

Applied Mathematics,Statistics and Probability

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A diffusion approximation for a network of reservoirs with power law release rule;Stochastic Hydrology and Hydraulics;1996-02

2. Two-Stage Release Rule Procedure in a Regenerative Dam;Probability in the Engineering and Informational Sciences;1993-10

3. A discrete-time storage process with a general release rule;Journal of Applied Probability;1989-09

4. A discrete-time storage process with a general release rule;Journal of Applied Probability;1989-09

5. Computational results for a dam problem with variable release rate and service level constraints;Communications in Statistics. Stochastic Models;1985-01

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