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Bin Han 0003
Person information
- affiliation: University of Alberta, Department of Mathematical and Statistical Sciences, Edmonton, AB, Canada
Other persons with the same name
- Bin Han — disambiguation page
- Bin Han 0001 — Beijing University of Posts and Telecommunications, MoE, Key Laboratory of Universal Wireless Communications, China
- Bin Han 0002 — Concordia University, Montreal, Quebec, Canada
- Bin Han 0004
— University of Kaiserslautern, Department of Electrical and Computer Engineering, Germany (and 1 more)
- Bin Han 0005
— Chinese Academy of Sciences, Shanghai Institutes for Biological Sciences, China
- Bin Han 0006
— China Telecom Technology Innovation Center, Beijing, China
- Bin Han 0007 — University of Maryland, College Park, MD, USA
- Bin Han 0008
— Royal Institute of Technology KTH, Stockholm, Sweden (and 2 more)
- Bin Han 0009 — Hangzhou Dianzi University, College of Life Information Science and Instrument Engineering, Institute for Biomedical Engineering and Instrumentation, China (and 1 more)
- Bin Han 0010
— Huazhong University of Science and Technology, School of Mechanical Science and Engineering, State Key Laboratory of Digital Manufacturing Equipment and Technology, Wuhan, China
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2020 – today
- 2024
- [j48]Bin Han
:
Interpolating refinable functions and ns-step interpolatory subdivision schemes. Adv. Comput. Math. 50(5): 98 (2024) - [j47]Bin Han
:
Vector subdivision schemes and their convergence for arbitrary matrix masks. J. Comput. Appl. Math. 437: 115478 (2024) - [j46]Qiwei Feng
, Bin Han, Peter D. Minev:
Sixth-order hybrid finite difference methods for elliptic interface problems with mixed boundary conditions. J. Comput. Phys. 497: 112635 (2024) - [i20]Qiwei Feng, Bin Han:
A Derivative-Orthogonal Wavelet Multiscale Method for 1D Elliptic Equations with Rough Diffusion Coefficients. CoRR abs/2410.23945 (2024) - 2023
- [j45]Qiwei Feng
, Bin Han, Peter D. Minev:
Compact 9-point finite difference methods with high accuracy order and/or M-matrix property for elliptic cross-interface problems. J. Comput. Appl. Math. 428: 115151 (2023) - [c1]Bin Han, Hui Xiao, Lei Yu, Zhiqiang Xu, Weiqing Chen, Xiaohu Sun:
Construction Progress Prediction of Substation Infrastructure Project Based on Random Forest. ISKE 2023: 324-330 - [i19]Qiwei Feng, Bin Han, Peter D. Minev:
Sixth-Order Hybrid FDMs and/or the M-Matrix Property for Elliptic Interface Problems with Mixed Boundary Conditions. CoRR abs/2306.13001 (2023) - 2022
- [j44]Qiwei Feng
, Bin Han
, Peter D. Minev:
A high order compact finite difference scheme for elliptic interface problems with discontinuous and high-contrast coefficients. Appl. Math. Comput. 431: 127314 (2022) - [i18]Qiwei Feng, Bin Han, Peter D. Minev:
Hybrid Finite Difference Schemes for Elliptic Interface Problems with Discontinuous and High-Contrast Variable Coefficients. CoRR abs/2205.01256 (2022) - [i17]Qiwei Feng, Bin Han, Peter D. Minev:
Compact 9-Point Finite Difference Methods with High Accuracy Order and/or M-Matrix Property for Elliptic Cross-Interface Problems. CoRR abs/2210.01290 (2022) - 2021
- [j43]Bin Han
, Michelle Michelle
, Yau Shu Wong:
Dirac assisted tree method for 1D heterogeneous Helmholtz equations with arbitrary variable wave numbers. Comput. Math. Appl. 97: 416-438 (2021) - [j42]Qiwei Feng
, Bin Han
, Peter D. Minev:
Sixth order compact finite difference schemes for Poisson interface problems with singular sources. Comput. Math. Appl. 99: 2-25 (2021) - [i16]Qiwei Feng, Bin Han, Peter D. Minev:
Sixth Order Compact Finite Difference Scheme for Poisson Interface Problem with Singular Sources. CoRR abs/2104.07866 (2021) - [i15]Qiwei Feng, Bin Han, Peter D. Minev:
A High Order Compact Finite Difference Scheme for Elliptic Interface Problems with Discontinuous and High-Contrast Coefficients. CoRR abs/2105.04600 (2021) - [i14]Qiwei Feng, Bin Han, Michelle Michelle:
Sixth Order Compact Finite Difference Method for 2D Helmholtz Equations with Singular Sources and Reduced Pollution Effect. CoRR abs/2112.07154 (2021) - 2020
- [j41]Elmira Ashpazzadeh, Bin Han, Mehrdad Lakestani, Mohsen Razzaghi:
Derivative-orthogonal wavelets for discretizing constrained optimal control problems. Int. J. Syst. Sci. 51(5): 786-810 (2020) - [j40]Chenzhe Diao
, Bin Han:
Generalized matrix spectral factorization and quasi-tight framelets with a minimum number of generators. Math. Comput. 89(326): 2867-2911 (2020) - [i13]Bin Han, Michelle Michelle, Yau Shu Wong:
Dirac Assisted Tree Method for 1D Heterogeneous Helmholtz Equations with Arbitrary Variable Wave Numbers. CoRR abs/2011.01295 (2020) - [i12]Bin Han, Michelle Michelle:
Wavelets on Intervals Derived from Arbitrary Compactly Supported Biorthogonal Multiwavelets. CoRR abs/2012.05371 (2020)
2010 – 2019
- 2019
- [j39]Bin Han, Tao Li
, Xiaosheng Zhuang
:
Directional compactly supported box spline tight framelets with simple geometric structure. Appl. Math. Lett. 91: 213-219 (2019) - [j38]Bin Han, Qun Mo, Zhenpeng Zhao, Xiaosheng Zhuang
:
Directional Compactly Supported Tensor Product Complex Tight Framelets with Applications to Image Denoising and Inpainting. SIAM J. Imaging Sci. 12(4): 1739-1771 (2019) - [i11]Bin Han, Michelle Michelle, Yau Shu Wong:
Wavelet-based Methods for Numerical Solutions of Differential Equations. CoRR abs/1909.12192 (2019) - 2018
- [j37]Bin Han, Qingtang Jiang
, Zuowei Shen
, Xiaosheng Zhuang
:
Symmetric canonical quincunx tight framelets with high vanishing moments and smoothness. Math. Comput. 87(309): 347-379 (2018) - [i10]Chenzhe Diao, Bin Han:
Quasi-tight Framelets with Directionality or High Vanishing Moments Derived from Arbitrary Refinable Functions. CoRR abs/1806.05241 (2018) - [i9]Chenzhe Diao, Bin Han:
Generalized Matrix Spectral Factorization and Quasi-tight Framelets with Minimum Number of Generators. CoRR abs/1806.07961 (2018) - 2017
- [j36]Elmira Ashpazzadeh, Bin Han, Mehrdad Lakestani
:
Biorthogonal multiwavelets on the interval for numerical solutions of Burgers' equation. J. Comput. Appl. Math. 317: 510-534 (2017) - [i8]Bin Han, Tao Li, Xiaosheng Zhuang:
Directional Compactly supported Box Spline Tight Framelets with Simple Structure. CoRR abs/1708.08421 (2017) - 2016
- [j35]Bin Han:
On linear independence of integer shifts of compactly supported distributions. J. Approx. Theory 201: 1-6 (2016) - [j34]Yi Shen, Bin Han, Elena Braverman:
Stability of the elastic net estimator. J. Complex. 32(1): 20-39 (2016) - [j33]Yi Shen, Bin Han, Elena Braverman:
Removal of Mixed Gaussian and Impulse Noise Using Directional Tensor Product Complex Tight Framelets. J. Math. Imaging Vis. 54(1): 64-77 (2016) - 2015
- [j32]Bin Han:
Algorithm for constructing symmetric dual framelet filter banks. Math. Comput. 84(292): 767-801 (2015) - [j31]Bin Han, Qun Mo, Zhenpeng Zhao:
Compactly Supported Tensor Product Complex Tight Framelets with Directionality. SIAM J. Math. Anal. 47(3): 2464-2494 (2015) - [i7]Bin Han, Zhiqiang Xu:
Robustness Properties of Dimensionality Reduction with Gaussian Random Matrices. CoRR abs/1501.01695 (2015) - [i6]Bin Han, Qingtang Jiang, Zuowei Shen, Xiaosheng Zhuang:
Symmetric Canonical Quincunx Tight Framelets with High Vanishing Moments and Smoothness. CoRR abs/1507.07492 (2015) - 2014
- [j30]Bin Han, Zhenpeng Zhao:
Tensor Product Complex Tight Framelets with Increasing Directionality. SIAM J. Imaging Sci. 7(2): 997-1034 (2014) - [i5]Yi Shen, Bin Han, Elena Braverman:
Image Inpainting Using Directional Tensor Product Complex Tight Framelets. CoRR abs/1407.3234 (2014) - [i4]Bin Han, Zhenpeng Zhao, Xiaosheng Zhuang:
Directional Tensor Product Complex Tight Framelets with Low Redundancy. CoRR abs/1412.5267 (2014) - 2013
- [j29]Bin Han, Xiaosheng Zhuang
:
Algorithms for matrix extension and orthogonal wavelet filter banks over algebraic number fields. Math. Comput. 82(281): 459-490 (2013) - [i3]Bin Han, Qun Mo, Zhenpeng Zhao:
Compactly Supported Tensor Product Complex Tight Framelets with Directionality. CoRR abs/1307.2599 (2013) - [i2]Bin Han, Zhenpeng Zhao:
Image Denoising Using Tensor Product Complex Tight Framelets with Increasing Directionality. CoRR abs/1307.2826 (2013) - 2011
- [j28]Bin Han:
Symmetric orthogonal filters and wavelets with linear-phase moments. J. Comput. Appl. Math. 236(4): 482-503 (2011) - [j27]Bin Han, Gitta Kutyniok
, Zuowei Shen
:
Adaptive Multiresolution Analysis Structures and Shearlet Systems. SIAM J. Numer. Anal. 49(5): 1921-1946 (2011) - 2010
- [j26]Bin Han:
Symmetric orthonormal complex wavelets with masks of arbitrarily high linear-phase moments and sum rules. Adv. Comput. Math. 32(2): 209-237 (2010) - [j25]Bin Han:
The structure of balanced multivariate biorthogonal multiwavelets and dual multiframelets. Math. Comput. 79(270): 917-951 (2010) - [j24]Bin Han, Xiaosheng Zhuang
:
Matrix Extension with Symmetry and Its Application to Symmetric Orthonormal Multiwavelets. SIAM J. Math. Anal. 42(5): 2297-2317 (2010) - [i1]Bin Han, Xiaosheng Zhuang:
Matrix Extension with Symmetry and Its Application to Filter Banks. CoRR abs/1001.1117 (2010)
2000 – 2009
- 2009
- [r1]Bin Han:
Bivariate (Two-dimensional) Wavelets. Encyclopedia of Complexity and Systems Science 2009: 589-599 - 2008
- [j23]Bin Han:
Refinable Functions and Cascade Algorithms in Weighted Spaces with Hölder Continuous Masks. SIAM J. Math. Anal. 40(1): 70-102 (2008) - [j22]Bin Han, Zuowei Shen
:
Compactly Supported Symmetric C∞ Wavelets with Spectral Approximation Order. SIAM J. Math. Anal. 40(3): 905-938 (2008) - 2006
- [j21]Bin Han:
Solutions in Sobolev spaces of vector refinement equations with a general dilation matrix. Adv. Comput. Math. 24(1-4): 375-403 (2006) - [j20]Bin Han, Rong-Qing Jia:
Optimal C2 two-dimensional interpolatory ternary subdivision schemes with two-ring stencils. Math. Comput. 75(255): 1287-1308 (2006) - [j19]Bin Han, Zuowei Shen
:
Wavelets with Short Support. SIAM J. Math. Anal. 38(2): 530-556 (2006) - 2005
- [j18]Serge Dubuc, Bin Han, Jean-Louis Merrien, Qun Mo:
Dyadic C2 Hermite interpolation on a square mesh. Comput. Aided Geom. Des. 22(8): 727-752 (2005) - [j17]Bin Han, Thomas Pok-Yin Yu, Yonggang Xue:
Noninterpolatory Hermite subdivision schemes. Math. Comput. 74(251): 1345-1367 (2005) - [j16]Wen Chen, Bin Han, Rong-Qing Jia:
On simple oversampled A/D conversion in shift-invariant spaces. IEEE Trans. Inf. Theory 51(2): 648-657 (2005) - [j15]Wen Chen, Bin Han, Rong-Qing Jia:
Estimate of aliasing error for non-smooth signals prefiltered by quasi-projections into shift-invariant spaces. IEEE Trans. Signal Process. 53(5): 1927-1933 (2005) - 2004
- [j14]Paul Shelley, Xiaobo Li, Bin Han:
A hybrid quantization scheme for image compression. Image Vis. Comput. 22(3): 203-213 (2004) - [j13]Bin Han, Thomas P. Y. Yu, Bruce R. Piper:
Multivariate refinable Hermite interpolant. Math. Comput. 73(248): 1913-1935 (2004) - [j12]Bin Han, Qun Mo:
Splitting a Matrix of Laurent Polynomials with Symmetry and itsApplication to Symmetric Framelet Filter Banks. SIAM J. Matrix Anal. Appl. 26(1): 97-124 (2004) - [j11]Wen Chen, Bin Han, Rong-Qing Jia:
Maximal gap of a sampling set for the exact iterative reconstruction algorithm in shift invariant spaces. IEEE Signal Process. Lett. 11(8): 655-658 (2004) - 2003
- [j10]Bin Han, Qun Mo:
Multiwavelet Frames from Refinable Function Vectors. Adv. Comput. Math. 18(2-4): 211-245 (2003) - [j9]Bin Han:
Vector cascade algorithms and refinable function vectors in Sobolev spaces. J. Approx. Theory 124(1): 44-88 (2003) - [j8]Bin Han:
Computing the Smoothness Exponent of a Symmetric Multivariate Refinable Function. SIAM J. Matrix Anal. Appl. 24(3): 693-714 (2003) - [j7]Bin Han, Michael L. Overton, Thomas P. Y. Yu:
Design of Hermite Subdivision Schemes Aided by Spectral Radius Optimization. SIAM J. Sci. Comput. 25(2): 643-656 (2003) - 2002
- [j6]Bin Han, Rong-Qing Jia:
Quincunx fundamental refinable functions and quincunx biorthogonal wavelets. Math. Comput. 71(237): 165-196 (2002) - 2001
- [j5]Bin Han:
Approximation Properties and Construction of Hermite Interpolants and Biorthogonal Multiwavelets. J. Approx. Theory 110(1): 18-53 (2001) - 2000
- [j4]Di-Rong Chen, Bin Han, Sherman D. Riemenschneider:
Construction of multivariate biorthogonal wavelets with arbitrary vanishing moments. Adv. Comput. Math. 13(2): 131-165 (2000) - [j3]Bin Han:
Analysis and Construction of Optimal Multivariate Biorthogonal Wavelets with Compact Support. SIAM J. Math. Anal. 31(2): 274-304 (2000)
1990 – 1999
- 1998
- [j2]Bin Han:
Symmetric orthonormal scaling functions and wavelets with dilation factor 4. Adv. Comput. Math. 8(3): 221-247 (1998) - [j1]Jason Knipe, Xiaobo Li, Bin Han:
An improved lattice vector quantization scheme for wavelet compression. IEEE Trans. Signal Process. 46(1): 239-243 (1998)
Coauthor Index

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