Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties

The concept of the hidden information on the gravity anomaly sources as joint fragment of the true and model disturbing objects was introduced. In the presence of uncertainty inherent to inverse problems, limit possibilities of algorithms for constructing the best estimates of the parameters of sour...

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Бібліографічні деталі
Дата:2016
Автори: Balk, P. I., Dolgal, A. S.
Формат: Стаття
Мова:rus
Опубліковано: Subbotin Institute of Geophysics of the NAS of Ukraine 2016
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Онлайн доступ:https://journals.uran.ua/geofizicheskiy/article/view/107825
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Назва журналу:Geofizicheskiy Zhurnal

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Geofizicheskiy Zhurnal
id journalsuranua-geofizicheskiy-article-107825
record_format ojs
spelling journalsuranua-geofizicheskiy-article-1078252020-10-07T11:19:44Z Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties Balk, P. I. Dolgal, A. S. gravitational exploration interpretation inverse problem field source noise anomalous error empirical risk minimization The concept of the hidden information on the gravity anomaly sources as joint fragment of the true and model disturbing objects was introduced. In the presence of uncertainty inherent to inverse problems, limit possibilities of algorithms for constructing the best estimates of the parameters of source models is to maximize the secure amount of the extracted reliable information. Justified application to “ore” type gravity nonlinear inverse problems known to minimization risk concept in solving the choice problem under conditions or a priori information shortage. According to this concept as the best of the feasible solutions of the inverse problem is chosen at which the minimum of the expectation value error of interpretation results is achieved. It is assumed zero median noise in the observed gravity field, i.e. the presence of positive and negative noise with equal probability, but it is not excluded that the absolute value of the interference of some of the same sign may prevail. Constructing a sufficiently representative set of feasible interpretation options of which the best one will be chosen, has been performed by fitting algorithm in the finite element class models of geological bodies. An important advantage of the method, which is based on the idea of minimizing the risk is the possibility of an approximate estimate of the proximity of the proposed mathematical model to the true anomaly sources. Produced the results of computational experiments confirming the effectiveness of such assessments, as well as higher quality of the inverse problem solution using the proposed method in comparison with the traditional approach. Subbotin Institute of Geophysics of the NAS of Ukraine 2016-08-01 Article Article application/pdf https://journals.uran.ua/geofizicheskiy/article/view/107825 10.24028/gzh.0203-3100.v38i5.2016.107825 Geofizicheskiy Zhurnal; Vol. 38 No. 5 (2016); 108-118 Геофизический журнал; Том 38 № 5 (2016); 108-118 Геофізичний журнал; Том 38 № 5 (2016); 108-118 2524-1052 0203-3100 rus https://journals.uran.ua/geofizicheskiy/article/view/107825/102774 Copyright (c) 2020 Geofizicheskiy Zhurnal https://creativecommons.org/licenses/by/4.0
institution Geofizicheskiy Zhurnal
collection OJS
language rus
topic gravitational exploration
interpretation
inverse problem
field source
noise
anomalous error
empirical risk minimization
spellingShingle gravitational exploration
interpretation
inverse problem
field source
noise
anomalous error
empirical risk minimization
Balk, P. I.
Dolgal, A. S.
Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
topic_facet gravitational exploration
interpretation
inverse problem
field source
noise
anomalous error
empirical risk minimization
format Article
author Balk, P. I.
Dolgal, A. S.
author_facet Balk, P. I.
Dolgal, A. S.
author_sort Balk, P. I.
title Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
title_short Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
title_full Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
title_fullStr Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
title_full_unstemmed Minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
title_sort minimization risk technique for solving gravity inverse problems in weak assumptions about geological noise properties
description The concept of the hidden information on the gravity anomaly sources as joint fragment of the true and model disturbing objects was introduced. In the presence of uncertainty inherent to inverse problems, limit possibilities of algorithms for constructing the best estimates of the parameters of source models is to maximize the secure amount of the extracted reliable information. Justified application to “ore” type gravity nonlinear inverse problems known to minimization risk concept in solving the choice problem under conditions or a priori information shortage. According to this concept as the best of the feasible solutions of the inverse problem is chosen at which the minimum of the expectation value error of interpretation results is achieved. It is assumed zero median noise in the observed gravity field, i.e. the presence of positive and negative noise with equal probability, but it is not excluded that the absolute value of the interference of some of the same sign may prevail. Constructing a sufficiently representative set of feasible interpretation options of which the best one will be chosen, has been performed by fitting algorithm in the finite element class models of geological bodies. An important advantage of the method, which is based on the idea of minimizing the risk is the possibility of an approximate estimate of the proximity of the proposed mathematical model to the true anomaly sources. Produced the results of computational experiments confirming the effectiveness of such assessments, as well as higher quality of the inverse problem solution using the proposed method in comparison with the traditional approach.
publisher Subbotin Institute of Geophysics of the NAS of Ukraine
publishDate 2016
url https://journals.uran.ua/geofizicheskiy/article/view/107825
work_keys_str_mv AT balkpi minimizationrisktechniqueforsolvinggravityinverseproblemsinweakassumptionsaboutgeologicalnoiseproperties
AT dolgalas minimizationrisktechniqueforsolvinggravityinverseproblemsinweakassumptionsaboutgeologicalnoiseproperties
first_indexed 2024-04-21T19:39:54Z
last_indexed 2024-04-21T19:39:54Z
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