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Kuo-Young Cheng
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2000 – 2009
- 2008
- [j9]Chun-Yen Chen, Kuo-Young Cheng:
A direction-oriented sharpness dependent filter for 3D polygon meshes. Comput. Graph. 32(2): 129-140 (2008) - [j8]Chun-Yen Chen, Kuo-Young Cheng:
A Sharpness-Dependent Filter for Recovering Sharp Features in Repaired 3D Mesh Models. IEEE Trans. Vis. Comput. Graph. 14(1): 200-212 (2008) - 2005
- [j7]Chun-Yen Chen, Kuo-Young Cheng:
A sharpness dependent filter for mesh smoothing. Comput. Aided Geom. Des. 22(5): 376-391 (2005) - [c5]Chun-Yen Chen, Kuo-Young Cheng, Hong-Yuan Mark Liao:
A Sharpness Dependent Approach to 3D Polygon Mesh Hole Filling. Eurographics (Short Presentations) 2005: 13-16 - 2004
- [j6]Ming-Shing Su, Wen-Liang Hwang, Kuo-Young Cheng:
Analysis on multiresolution mosaic images. IEEE Trans. Image Process. 13(7): 952-959 (2004) - [c4]Chun-Yen Chen, Kuo-Young Cheng, Hong-Yuan Mark Liao:
Fairing of Polygon Meshes Via Bayesian Discriminant Analysis. WSCG 2004: 175-182 - 2002
- [c3]Ming-Shing Su, Chun-Yen Chen, Kuo-Young Cheng:
An Automatic Construction of a Person's Face Model from the Person?s Two Orthogonal Views. GMP 2002: 179-186 - 2001
- [j5]Ming-Shing Su, Ming-Tat Ko, Kuo-Young Cheng:
Control of Feature-point-driven Facial Animation Using a Hypothetical Face. Comput. Graph. Forum 20(4): 179-188 (2001) - [c2]Ming-Shing Su, Wen-Liang Hwang, Kuo-Young Cheng:
Variational calculus approach to multiresolution image mosaic. ICIP (2) 2001: 245-248 - 2000
- [c1]Ming-Shing Su, Kuo-Young Cheng, Ming-Tat Ko:
Control of Feature-Point-Driven Facial Animation Using a Hypothetical Face. PG 2000: 359-
1980 – 1989
- 1986
- [j4]Mark C. K. Yang, Chong-Kyo Kim, Kuo-Young Cheng, Chung-Chun Yang, S. S. Liu:
Automatic curve fitting with quadratic B-spline functions and its applications to computer-assisted animation. Comput. Vis. Graph. Image Process. 33(3): 346-363 (1986)
1970 – 1979
- 1973
- [j3]Kuo-Young Cheng:
Note on minimizing the bandwidth of sparse, symmetric matrices. Computing 11(1): 27-30 (1973) - [j2]Reginald P. Tewarson, Kuo-Young Cheng:
A desirable form for sparse matrices when computing their inverse in factored forms. Computing 11(1): 31-38 (1973) - [j1]Kuo-Young Cheng:
Minimizing the bandwidth of sparse symmetric matrices. Computing 11(2): 103-110 (1973)
Coauthor Index
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