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MULTILEVEL QUASI-MONTE CARLO METHODS FOR LOGNORMAL DIFFUSION PROBLEMS

机译:用于逻辑漫射问题的多级Quasi-Monte Carlo方法

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摘要

In this paper we present a rigorous cost and error analysis of a multilevel estimator based on randomly shifted Quasi-Monte Carlo (QMC) lattice rules for lognormal diffusion problems. These problems are motivated by uncertainty quantification problems in subsurface flow. We extend the convergence analysis in [Graham et al., Numer. Math. 2014] to multilevel Quasi-Monte Carlo finite element discretisations and give a constructive proof of the dimension-independent convergence of the QMC rules. More precisely, we provide suitable parameters for the construction of such rules that yield the required variance reduction for the multilevel scheme to achieve an epsilon-error with a cost of O(epsilon(-theta))with theta < 2, and in practice even theta approximate to 1, for sufficiently fast decaying covariance kernels of the underlying Gaussian random field inputs. This confirms that the computational gains due to the application of multilevel sampling methods and the gains due to the application of QMC methods, both demonstrated in earlier works for the same model problem, are complementary. A series of numerical experiments confirms these gains. The results show that in practice the multilevel QMC method consistently outperforms both the multilevel MC method and the single-level variants even for nonsmooth problems.
机译:本文基于随机移位的准蒙特卡罗(QMC)晶格规则,提出了一种严格的成本和误差分析,用于基于用于逻辑正常扩散问题的Quasi-Monte Carlo(QMC)晶格规则。这些问题是由于地下流量的不确定性量化问题而激励。我们在[Graham等人,数值。数学。 2014]到多级准蒙特卡罗有限元的自由度,并提供了QMC规则的维度无关融合的建设性证据。更确切地说,我们为建造这些规则提供合适的参数,从而产生多级方案的所需方差减少,以实现具有与θ<2的o(ε(-theta))成本的epsilon误差,甚至Theta近似为1,对于底层高斯随机场输入的充分快速衰减的协方差核。这证实了由于应用QMC方法的多级采样方法的应用和增益导致的计算增益,两者在同一模型问题的早期作品中都证明,是互补的。一系列数值实验证实了这些收益。结果表明,在实践中,多级QMC方法始终占多级MC方法和单级变体,即使对于非光驱问题也是如此。

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