Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology

Based on the basic idea of the homotopy perturbation method which was proposed by Jihuan He, a target controllable image segmentation model and the corresponding multiscale wavelet numerical method are constructed. Using the novel model, we can get the only right object from the multiobject images,...

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Main Author: Shu-Li Mei
Format: Article
Language:English
Published: Wiley 2013-01-01
Series:Abstract and Applied Analysis
Online Access:http://dx.doi.org/10.1155/2013/131207
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author Shu-Li Mei
author_facet Shu-Li Mei
author_sort Shu-Li Mei
collection DOAJ
description Based on the basic idea of the homotopy perturbation method which was proposed by Jihuan He, a target controllable image segmentation model and the corresponding multiscale wavelet numerical method are constructed. Using the novel model, we can get the only right object from the multiobject images, which is helpful to avoid the oversegmentation and insufficient segmentation. The solution of the variational model is the nonlinear PDEs deduced by the variational approach. So, the bottleneck of the variational model on image segmentation is the lower efficiency of the algorithm. Combining the multiscale wavelet interpolation operator and HPM, a semianalytical numerical method can be obtained, which can improve the computational efficiency and accuracy greatly. The numerical results on some images segmentation show that the novel model and the numerical method are effective and practical.
format Article
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institution Kabale University
issn 1085-3375
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language English
publishDate 2013-01-01
publisher Wiley
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series Abstract and Applied Analysis
spelling doaj-art-399a1809d7b74d82b189053d346680712025-02-03T06:42:23ZengWileyAbstract and Applied Analysis1085-33751687-04092013-01-01201310.1155/2013/131207131207Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation TechnologyShu-Li Mei0College of Information and Electrical Engineering, China Agricultural University, Postbox 53, East Campus, 17 Qinghua Donglu Road, Haidian District, Beijing 100083, ChinaBased on the basic idea of the homotopy perturbation method which was proposed by Jihuan He, a target controllable image segmentation model and the corresponding multiscale wavelet numerical method are constructed. Using the novel model, we can get the only right object from the multiobject images, which is helpful to avoid the oversegmentation and insufficient segmentation. The solution of the variational model is the nonlinear PDEs deduced by the variational approach. So, the bottleneck of the variational model on image segmentation is the lower efficiency of the algorithm. Combining the multiscale wavelet interpolation operator and HPM, a semianalytical numerical method can be obtained, which can improve the computational efficiency and accuracy greatly. The numerical results on some images segmentation show that the novel model and the numerical method are effective and practical.http://dx.doi.org/10.1155/2013/131207
spellingShingle Shu-Li Mei
Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
Abstract and Applied Analysis
title Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
title_full Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
title_fullStr Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
title_full_unstemmed Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
title_short Construction of Target Controllable Image Segmentation Model Based on Homotopy Perturbation Technology
title_sort construction of target controllable image segmentation model based on homotopy perturbation technology
url http://dx.doi.org/10.1155/2013/131207
work_keys_str_mv AT shulimei constructionoftargetcontrollableimagesegmentationmodelbasedonhomotopyperturbationtechnology