Spatial quadratic variations for the solution to a stochastic partial differential equation with elliptic divergence form operator

IF 0.7 Q3 STATISTICS & PROBABILITY Modern Stochastics-Theory and Applications Pub Date : 2020-01-08 DOI:10.15559/19-VMSTA139
M. Zili, Eya Zougar
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引用次数: 5

Abstract

We introduce a stochastic partial differential equation (SPDE) with elliptic operator in divergence form, with measurable and bounded coefficients and driven by space-time white noise. Such SPDEs could be used in mathematical modelling of diffusion phenomena in medium consisting of different kinds of materials and undergoing stochastic perturbations. We characterize the solution and, using the Stein--Malliavin calculus, we prove that the sequence of its recentered and renormalized spatial quadratic variations satisfies an almost sure central limit theorem. Particular focus is given to the interesting case where the coefficients of the operator are piecewise constant.
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带椭圆散度算子的随机偏微分方程解的空间二次变分
引入一种随机偏微分方程(SPDE),该方程具有发散形式的椭圆算子,系数可测且有界,由时空白噪声驱动。该spde可用于模拟由不同材料组成的随机扰动介质中扩散现象的数学模型。我们对解进行了刻画,并利用Stein—Malliavin演算证明了它的重中心和重归一化的空间二次变分序列满足一个几乎确定的中心极限定理。特别的重点是给出了有趣的情况,其中算子的系数是分段常数。
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来源期刊
Modern Stochastics-Theory and Applications
Modern Stochastics-Theory and Applications STATISTICS & PROBABILITY-
CiteScore
1.30
自引率
50.00%
发文量
0
审稿时长
10 weeks
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