Efficient simulation of multivariate three-dimensional cross-correlated random fields conditioning on non-lattice measurement data
It is challenging to simulate large-scale or fine-resolution multivariate three-dimensional (3D) cross-correlated conditional random fields because of computational issues such as inverting, storing or Cholesky decomposition of large correlation matrices. Recently, an efficient univariate 3D conditi...
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Published in | Computer methods in applied mechanics and engineering Vol. 388; p. 114208 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier B.V
01.01.2022
Elsevier BV |
Subjects | |
Online Access | Get full text |
ISSN | 0045-7825 1879-2138 |
DOI | 10.1016/j.cma.2021.114208 |
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Abstract | It is challenging to simulate large-scale or fine-resolution multivariate three-dimensional (3D) cross-correlated conditional random fields because of computational issues such as inverting, storing or Cholesky decomposition of large correlation matrices. Recently, an efficient univariate 3D conditional random field simulation method was developed based on the separability assumption of the autocorrelation functions in the vertical and horizontal directions. The developed simulation method allows for Kronecker-product derivations of the large correlation matrices and thus does not need to invert and store large matrices. Moreover, it can handle univariate non-lattice data (e.g., all soundings measure the data of one soil property and there exists missing data at some depths at some soundings). It may be more common to see multivariate non-lattice data (e.g., all soundings measure the data of multiple soil properties and there exists missing data of some properties at some depths at some soundings) in practical site investigations. However, the proposed method is not applicable to multivariate non-lattice data because it cannot directly account for the cross-correlation among different variables The purpose of the current paper is to extend the previous method to accommodate the multivariate non-lattice data. The extended method still takes advantage of the Kronecker-product derivations to avoid the mathematical operation of the large correlation matrices. A simulated example is adopted to illustrate the effectiveness of the extended method. |
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AbstractList | It is challenging to simulate large-scale or fine-resolution multivariate three-dimensional (3D) cross-correlated conditional random fields because of computational issues such as inverting, storing or Cholesky decomposition of large correlation matrices. Recently, an efficient univariate 3D conditional random field simulation method was developed based on the separability assumption of the autocorrelation functions in the vertical and horizontal directions. The developed simulation method allows for Kronecker-product derivations of the large correlation matrices and thus does not need to invert and store large matrices. Moreover, it can handle univariate non-lattice data (e.g., all soundings measure the data of one soil property and there exists missing data at some depths at some soundings). It may be more common to see multivariate non-lattice data (e.g., all soundings measure the data of multiple soil properties and there exists missing data of some properties at some depths at some soundings) in practical site investigations. However, the proposed method is not applicable to multivariate non-lattice data because it cannot directly account for the cross-correlation among different variables The purpose of the current paper is to extend the previous method to accommodate the multivariate non-lattice data. The extended method still takes advantage of the Kronecker-product derivations to avoid the mathematical operation of the large correlation matrices. A simulated example is adopted to illustrate the effectiveness of the extended method. |
ArticleNumber | 114208 |
Author | Qi, Xiaohui Yang, Zhiyong Li, Xueyou |
Author_xml | – sequence: 1 givenname: Zhiyong surname: Yang fullname: Yang, Zhiyong email: yangzhy85@mail.sysu.edu.cn organization: School of Civil Engineering, Sun Yat-Sen University, Guangzhou, China – sequence: 2 givenname: Xueyou surname: Li fullname: Li, Xueyou email: lixueyou@mail.sysu.edu.cn organization: School of Civil Engineering, Sun Yat-Sen University, Guangzhou, China – sequence: 3 givenname: Xiaohui orcidid: 0000-0003-2349-6005 surname: Qi fullname: Qi, Xiaohui email: xiaohui.qi@northumbria.ac.uk organization: Department of Mechanical and Construction Engineering, Northumbria University, Newcastle Upon Tyne, NE1 8ST, UK |
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Keywords | Non-lattice data Gibbs sampler Cross-correlated conditional random field Spatial variability 3D site characterization Monte Carlo simulation |
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SubjectTerms | 3D site characterization Autocorrelation functions Conditional random fields Correlation analysis Cross correlation Cross-correlated conditional random field Gibbs sampler Missing data Monte Carlo simulation Multivariate analysis Non-lattice data Simulation Soil properties Soils Spatial variability |
Title | Efficient simulation of multivariate three-dimensional cross-correlated random fields conditioning on non-lattice measurement data |
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