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Transactions on Edutainment XV
Xinjiang carpet patterns have flowery color, strong contrast, and the overall harmony, how to design a carpet patterns with Xinjiang style feature is a challenging problem. This paper puts forward a method based on interactive choice mechanism and establishment color constraint rules in order to create Xinjiang carpet patterns. First, we can establish pattern design model through the medallion pattern, corner pattern and brink pattern; then according to the user’s choice, we can get sample pattern, and establish respectively dominant color matrix of samples and generated patterns; finally, through the color similarity to generate design constraints, the simulation experiment shows that method of the paper can innovatively design more inherited color style of Xinjiang carpet designs, and enrich the research methods of Xinjiang carpet style design.
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1.
Zurück zum Zitat Bastanfard, A., Mansourifar, H.: A novel decorative Islamic star pattern generation algorithm. In: 2010 International Conference of Computational Science and Its Applications, pp. 111–117 (2010) Bastanfard, A., Mansourifar, H.: A novel decorative Islamic star pattern generation algorithm. In: 2010 International Conference of Computational Science and Its Applications, pp. 111–117 (2010)
2.
Zurück zum Zitat Alexander, H.: The computer/plotter and the 17 ornamental design types. In Proceedings of IGGRAPH 1975, pp. 160–167 (1975) Alexander, H.: The computer/plotter and the 17 ornamental design types. In Proceedings of IGGRAPH 1975, pp. 160–167 (1975)
3.
Zurück zum Zitat Khajeh, M., Payvandy, P., Derakhshan, S.J.: Fashion set design with an emphasis on fabric composition using the interactive genetic algorithm. Fashion Text. 3(1), 8–24 (2016) CrossRef Khajeh, M., Payvandy, P., Derakhshan, S.J.: Fashion set design with an emphasis on fabric composition using the interactive genetic algorithm. Fashion Text.
3(1), 8–24 (2016)
CrossRef
4.
Zurück zum Zitat Zhang, J., Zhang, K., Peng, R., et al.: Computer-aided generation of mandala thangka patterns. In: International Symposium on Visual Information Communication & Interaction. ACM (2017) Zhang, J., Zhang, K., Peng, R., et al.: Computer-aided generation of mandala thangka patterns. In: International Symposium on Visual Information Communication & Interaction. ACM (2017)
5.
Zurück zum Zitat Glassner, A.: Frieze groups. IEEE Comput. Graph. Appl. 16(3), 78–83 (1996) CrossRef Glassner, A.: Frieze groups. IEEE Comput. Graph. Appl.
16(3), 78–83 (1996)
CrossRef
6.
Zurück zum Zitat Izadi, A., Rezaei (Ghahroudi), M., Bastanfard, A.: A computerized method to generate complex symmetric and geometric tiling patterns. In: Plemenos, D., Miaoulis, G. (eds.) Intelligent Computer Graphics 2010 Studies in Computational Intelligence, vol. 321, pp. 185–210. Springer, Heidelberg (2010). https://doi.org/10.1007/978-3-642-15690-8_10 Izadi, A., Rezaei (Ghahroudi), M., Bastanfard, A.: A computerized method to generate complex symmetric and geometric tiling patterns. In: Plemenos, D., Miaoulis, G. (eds.) Intelligent Computer Graphics 2010 Studies in Computational Intelligence, vol. 321, pp. 185–210. Springer, Heidelberg (2010).
https://doi.org/10.1007/978-3-642-15690-8_10
7.
Zurück zum Zitat Darani, Z.S., Kaedi, M.: Improving the interactive genetic algorithm for customer-centric product design by automatically scoring the unfavorable designs. Human-centric Comput. Inf. Sci. 7(1), 38–45 (2017) CrossRef Darani, Z.S., Kaedi, M.: Improving the interactive genetic algorithm for customer-centric product design by automatically scoring the unfavorable designs. Human-centric Comput. Inf. Sci.
7(1), 38–45 (2017)
CrossRef
8.
Zurück zum Zitat Kaplan, C.S., Salesin, D.H.: Islamic star patterns in absolute geometry. ACM Trans. Graph. 23(2), 97–119 (2004) CrossRef Kaplan, C.S., Salesin, D.H.: Islamic star patterns in absolute geometry. ACM Trans. Graph.
23(2), 97–119 (2004)
CrossRef
9.
Zurück zum Zitat Albert, F., et al.: A new method to analyse mosaics based on symmetry group theory applied to Islamic Geometric Patterns. Comput. Vis. Image Understand. 130, 54–70 (2014). https://doi.org/10.1016/j.cviu.2014.09.002 Albert, F., et al.: A new method to analyse mosaics based on symmetry group theory applied to Islamic Geometric Patterns. Comput. Vis. Image Understand.
130, 54–70 (2014).
https://doi.org/10.1016/j.cviu.2014.09.002
10.
Zurück zum Zitat Rasouli, P., Bastanfard, A., Rezvanian, A., Jalilian, O.: Fast algorithms for computer generated islamic patterns of 8-ZOHREH and 8-SILI. In: Huang, Y.-M.R., et al. (eds.) PCM 2008. LNCS, vol. 5353, pp. 825–829. Springer, Heidelberg (2008). https://doi.org/10.1007/978-3-540-89796-5_91 CrossRef Rasouli, P., Bastanfard, A., Rezvanian, A., Jalilian, O.: Fast algorithms for computer generated islamic patterns of 8-ZOHREH and 8-SILI. In: Huang, Y.-M.R., et al. (eds.) PCM 2008. LNCS, vol. 5353, pp. 825–829. Springer, Heidelberg (2008).
https://doi.org/10.1007/978-3-540-89796-5_91
CrossRef
11.
Zurück zum Zitat Zarghili, A., Gadi, N., Benslimane, R., Bouatouch, K.: Arabo-moresque decor image re-trieval system based on mosaic representations. J. Cult. Herit. 2(2), 149–154 (2001) Zarghili, A., Gadi, N., Benslimane, R., Bouatouch, K.: Arabo-moresque decor image re-trieval system based on mosaic representations. J. Cult. Herit.
2(2), 149–154 (2001)
12.
Zurück zum Zitat Gerdes, P.: Reconstruction and extension of lost symmetries: examples from tamil of South India. Comput. Math Appl. 17(4–6), 791–813 (1989) MathSciNetCrossRef Gerdes, P.: Reconstruction and extension of lost symmetries: examples from tamil of South India. Comput. Math Appl.
17(4–6), 791–813 (1989)
MathSciNetCrossRef
13.
Zurück zum Zitat Nagata, S., Robinson, T.: Digitalization of kolam patterns and tactile kolam tools. In: Formal Models, Languages and Applications. Series in Machine Perception and Artificial Intelligence, vol. 66, pp. 353–362 (2006) Nagata, S., Robinson, T.: Digitalization of kolam patterns and tactile kolam tools. In: Formal Models, Languages and Applications. Series in Machine Perception and Artificial Intelligence, vol. 66, pp. 353–362 (2006)
14.
Zurück zum Zitat Lalitha, D., Rangarajan, K.: Petrinets generating kolam patterns. Indian J. Comput. Sci. Eng. 3(1), 68–74 (2012) Lalitha, D., Rangarajan, K.: Petrinets generating kolam patterns. Indian J. Comput. Sci. Eng.
3(1), 68–74 (2012)
15.
Zurück zum Zitat Suyi, L., Leduo, Z.: Textile pattern generation technique based on quasi-regular pattern theory and their transform. In: 2008 IEEE Pacific-Asia Workshop on Computational Intelligence and Industrial Application, pp. 264–266 (2008) Suyi, L., Leduo, Z.: Textile pattern generation technique based on quasi-regular pattern theory and their transform. In: 2008 IEEE Pacific-Asia Workshop on Computational Intelligence and Industrial Application, pp. 264–266 (2008)
16.
Zurück zum Zitat Zhang, Z., Suyi, L.: Pattern design of textile printing based on the transform of the julia set. In: VECIMS 2009 International Conference on Virtual Environments, Human-Computer Interfaces and Measurements Systems Hong Kong, China, 11–13 May 2009 Zhang, Z., Suyi, L.: Pattern design of textile printing based on the transform of the julia set. In: VECIMS 2009 International Conference on Virtual Environments, Human-Computer Interfaces and Measurements Systems Hong Kong, China, 11–13 May 2009
17.
Zurück zum Zitat Zhang, Z., Wang, M.: The application to fractal of complex dynamics system on innovative design of textile pattern. In: 2011 Workshop on Digital Media and Digital Content Management, pp. 330–335 (2011) Zhang, Z., Wang, M.: The application to fractal of complex dynamics system on innovative design of textile pattern. In: 2011 Workshop on Digital Media and Digital Content Management, pp. 330–335 (2011)
18.
Zurück zum Zitat Zhao, X., Yang, X.: Auto generation of textile patterns based on IFS. In: 2009 Fifth International Conference on Natural Computation, pp. 451–454 (2009) Zhao, X., Yang, X.: Auto generation of textile patterns based on IFS. In: 2009 Fifth International Conference on Natural Computation, pp. 451–454 (2009)
19.
Zurück zum Zitat Niu, X., Yuan, X.: Packaging design of IFS algorithm based on fractal theory. Revista de la Facultad de Ingeniería U.C.V. 32(14), 502–507 (2017) Niu, X., Yuan, X.: Packaging design of IFS algorithm based on fractal theory. Revista de la Facultad de Ingeniería U.C.V.
32(14), 502–507 (2017)
20.
Zurück zum Zitat Xu, J., Kaplan, C.S., Mi, X.: Computer-generated paper cutting. In: 15th Pacific Conference on PG 2007, pp. 343–350, 29 Oct–2 Nov 2007 Xu, J., Kaplan, C.S., Mi, X.: Computer-generated paper cutting. In: 15th Pacific Conference on PG 2007, pp. 343–350, 29 Oct–2 Nov 2007
21.
Zurück zum Zitat Lei, H.: A survey of digital paper-cutting. Comput. Aided Drafting Des. Manufact. 22(3), 12–17 (2012) Lei, H.: A survey of digital paper-cutting. Comput. Aided Drafting Des. Manufact.
22(3), 12–17 (2012)
22.
Zurück zum Zitat Chi, M.T., Liu, W.C., Hsu, S.H.: Image stylization using anisotropic reaction diffusion (2016) Chi, M.T., Liu, W.C., Hsu, S.H.: Image stylization using anisotropic reaction diffusion (2016)
23.
Zurück zum Zitat Peng, D., Liu, X., Sun, S.: An information view: digitalizing theory and methods in nonmaterial cultural heritage protection. J. Comput.-Aided Des. Comput. Graph. 20(1), 117–123 Peng, D., Liu, X., Sun, S.: An information view: digitalizing theory and methods in nonmaterial cultural heritage protection. J. Comput.-Aided Des. Comput. Graph.
20(1), 117–123
24.
Zurück zum Zitat Kankanhalli, M.S., Mehtre, B.M., Wu, J.K.: Cluster-based color matching for image retrieval. Pattern Recognit. 29(4), 701–708 (1996) CrossRef Kankanhalli, M.S., Mehtre, B.M., Wu, J.K.: Cluster-based color matching for image retrieval. Pattern Recognit.
29(4), 701–708 (1996)
CrossRef
25.
Zurück zum Zitat Celenk, M.: A color clustering technique for image segmentation. Comput. Vis. Graph. Image Process. 52, 145–170 (1990) CrossRef Celenk, M.: A color clustering technique for image segmentation. Comput. Vis. Graph. Image Process.
52, 145–170 (1990)
CrossRef
26.
Zurück zum Zitat Senthilkani, A.S., Ananth, C., et al.: Overlap wavelet transform for image segmentation. Int. J. Electron. Commun. Comput. Technol. (2017) Senthilkani, A.S., Ananth, C., et al.: Overlap wavelet transform for image segmentation. Int. J. Electron. Commun. Comput. Technol. (2017)
- Titel
- The Style-Based Automatic Generation System for Xinjiang Carpet Patterns
- DOI
- https://doi.org/10.1007/978-3-662-59351-6_7
- Autoren:
-
Xiao Gang Hou
Hai Ying Zhao
- Verlag
- Springer Berlin Heidelberg
- Sequenznummer
- 7