{ "id": "1709.06037", "version": "v1", "published": "2017-09-18T16:49:18.000Z", "updated": "2017-09-18T16:49:18.000Z", "title": "Efficient simulation of Brown-Resnick processes based on variance reduction of Gaussian processes", "authors": [ "Marco Oesting", "Kirstin Strokorb" ], "comment": "22 pages, 2 figures, 3 tables", "categories": [ "math.PR" ], "abstract": "Brown-Resnick processes are max-stable processes that are associated to Gaussian processes. Their simulation is often based on the corresponding spectral representation which is not unique. We show that simulation accuracy and efficiency can be substantially improved by minimizing the maximal variance of the underlying Gaussian process. Such a minimization is a difficult mathematical problem that also depends on the geometry of the simulation domain. We extend Matheron's (1974) seminal contribution in two aspects: (i) making his description of a minimal maximal variance explicit for convex variograms on symmetric domains and (ii) proving that the same strategy reduces the maximal variance also for a huge class of non-convex variograms representable through a Bernstein function. A simulation study confirms that our non-costly modification can lead to substantial improvements and compete with state-of-the-art algorithms.", "revisions": [ { "version": "v1", "updated": "2017-09-18T16:49:18.000Z" } ], "analyses": { "subjects": [ "60G70", "60G15", "60G60" ], "keywords": [ "gaussian process", "brown-resnick processes", "variance reduction", "efficient simulation", "minimal maximal variance explicit" ], "note": { "typesetting": "TeX", "pages": 22, "language": "en", "license": "arXiv", "status": "editable" } } }