Functional limit theorems for a new class of non-stationary shot noise processes |
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Authors: | Guodong Pang Yuhang Zhou |
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Affiliation: | The Harold and Inge Marcus Department of Industrial and Manufacturing Engineering, Pennsylvania State University, University Park, PA 16802, United States |
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Abstract: | We study a class of non-stationary shot noise processes which have a general arrival process of noises with non-stationary arrival rate and a general shot shape function. Given the arrival times, the shot noises are conditionally independent and each shot noise has a general (multivariate) cumulative distribution function (c.d.f.) depending on its arrival time. We prove a functional weak law of large numbers and a functional central limit theorem for this new class of non-stationary shot noise processes in an asymptotic regime with a high intensity of shot noises, under some mild regularity conditions on the shot shape function and the conditional (multivariate) c.d.f. We discuss the applications to a simple multiplicative model (which includes a class of non-stationary compound processes and applies to insurance risk theory and physics) and the queueing and work-input processes in an associated non-stationary infinite-server queueing system. To prove the weak convergence, we show new maximal inequalities and a new criterion of existence of a stochastic process in the space given its consistent finite dimensional distributions, which involve a finite set function with the superadditive property. |
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Keywords: | Shot noise processes Functional weak law of large numbers Functional central limit theorem Gaussian limit Non-stationarity Weak convergence Maximal inequalities Corresponding author. |
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