Title of article :
Hierarchical adaptive experimental design for Gaussian process emulators
Author/Authors :
Busby، نويسنده , , Daniel، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
11
From page :
1183
To page :
1193
Abstract :
Large computer simulators have usually complex and nonlinear input output functions. This complicated input output relation can be analyzed by global sensitivity analysis; however, this usually requires massive Monte Carlo simulations. To effectively reduce the number of simulations, statistical techniques such as Gaussian process emulators can be adopted. The accuracy and reliability of these emulators strongly depend on the experimental design where suitable evaluation points are selected. In this paper a new sequential design strategy called hierarchical adaptive design is proposed to obtain an accurate emulator using the least possible number of simulations. The hierarchical design proposed in this paper is tested on various standard analytic functions and on a challenging reservoir forecasting application. Comparisons with standard one-stage designs such as maximin latin hypercube designs show that the hierarchical adaptive design produces a more accurate emulator with the same number of computer experiments. Moreover a stopping criterion is proposed that enables to perform the number of simulations necessary to obtain required approximation accuracy.
Keywords :
Gaussian process regression , Sequential Experimental Design , Data-adaptive modeling , Reservoir forecasting , Sensitivity analysis
Journal title :
Reliability Engineering and System Safety
Serial Year :
2009
Journal title :
Reliability Engineering and System Safety
Record number :
1572437
Link To Document :
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