Université Blida 1

Contribution to the method of Experimental design

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dc.contributor.author Ait Ameur, Ahmed
dc.date.accessioned 2025-11-26T14:07:27Z
dc.date.available 2025-11-26T14:07:27Z
dc.date.issued 2025
dc.identifier.uri https://di.univ-blida.dz/jspui/handle/123456789/41041
dc.description.abstract Recent advancements in modeling, combined with a significant increase in computing power, have enabled the development of simulators capable of replicating physical phenomena with unmatched precision. However, the complexity and time cost of these simulators often make their direct use impractical. To overcome these challenges, it is common to use computer experiment designs to create simpler surrogate functions using approximation or interpolation methods. This work focuses on the creation of computer experiment designs based on stochastic processes. Traditional methods, although extensively studied, have limitations in the context of computer simulations where the error primarily arises from the model. Therefore, suitable plans are needed to optimize the coverage of the experimental domain and detect potential irregularities. We propose new computer experiment designs using marked point processes and area-interaction point processes. These approaches incorporate geometric knowledge and prior information about the experimental points, allowing for a uniform distribution within the unit hypercube. Specifically, Strauss marked point processes with two marks and area-interaction point processes are used to generate these plans. For this purpose, we employ Monte Carlo Markov Chain (MCMC) techniques, including the Metropolis-Hastings algorithm. fr_FR
dc.language.iso en fr_FR
dc.publisher univ.Blida 1 fr_FR
dc.subject Computer experiments design fr_FR
dc.subject Design of experiments fr_FR
dc.subject Point processes fr_FR
dc.title Contribution to the method of Experimental design fr_FR
dc.type Thesis fr_FR


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