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Hao Jiang 0001
Person information
- affiliation (PhD 2013): National University of Defense Technology, College of Computer, Changsha, China
Other persons with the same name
- Hao Jiang — disambiguation page
- Hao Jiang 0002 — Stanford University, Department of Mechanical Engineering, CA, USA
- Hao Jiang 0003 — Huazhong University of Science and Technology, School of Mechanical Science and Engineering, Wuhan, China (and 2 more)
- Hao Jiang 0004 — Guangzhou Institute of Geography, Guangdong Open Laboratory of Geospatial Information Technology and Application, China (and 1 more)
- Hao Jiang 0005 — Beihang University, Center for Information and Control, Seventh Research Division, Beijing, China
- Hao Jiang 0006 — Nanjing University of Information Science and Technology, College of Electronic and Information Engineering, China (and 1 more)
- Hao Jiang 0007 — Boston College, Chestnut Hill, MA, USA (and 2 more)
- Hao Jiang 0008 — Fuzhou University, College of Electrical Engineering and Automation, Fuzhou, China (and 2 more)
- Hao Jiang 0009 — Renmin University of China, Beijing, China, Department of Mathematics, Beijing, China (and 1 more)
- Hao Jiang 0010 — Wuhan University, School of Electronic Information, China
- Hao Jiang 0011 — University of Hong Kong (and 1 more)
- Hao Jiang 0012 — Pennsylvania State University, University Park, PA, USA
- Hao Jiang 0013 — CAS, Institute of Computing Technology, Beijing, China
- Hao Jiang 0014 — San Francisco State University, School of Engineering, San Francisco, CA, USA (and 1 more)
- Hao Jiang 0015 — University of Science and Technology of China, Hefei, China
- Hao Jiang 0016 — Clemson University, SC, USA
- Hao Jiang 0017 — University of Massachusetts, Amherst, MA, USA
- Hao Jiang 0018 — Michigan State University, USA
- Hao Jiang 0019 — University of Kaiserslautern, Germany
- Hao Jiang 0020 — Central South University, School of Geosciences and Info-Physics, Changsha, China
- Hao Jiang 0021 — Harvard University, Cambridge, MA USA (and 2 more)
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2020 – today
- 2023
- [j34]Chuanying Li, Roberto Barrio, Xiong Xiao, Peibing Du, Hao Jiang, Zhe Quan, Kenli Li:
PACF: A precision-adjustable computational framework for solving singular values. Appl. Math. Comput. 440: 127611 (2023) - [j33]Chuanying Li, Stef Graillat, Zhe Quan, Tongxiang Gu, Hao Jiang, Kenli Li:
XHYPRE: a reliable parallel numerical algorithm library for solving large-scale sparse linear equations. CCF Trans. High Perform. Comput. 5(2): 191-209 (2023) - [j32]Kuan Li, Kang He, Stef Graillat, Hao Jiang, Tongxiang Gu, Jie Liu:
Multi-level parallel multi-layer block reproducible summation algorithm. Parallel Comput. 115: 102996 (2023) - 2022
- [j31]Xiaojun Lei, Tongxiang Gu, Stef Graillat, Hao Jiang, Jin Qi:
A fast parallel high-precision summation algorithm based on AccSumK. J. Comput. Appl. Math. 406: 113827 (2022) - [j30]Shengguo Li, Hao Jiang, Dezun Dong, Chun Huang, Jie Liu, Xia Liao, Xuguang Chen:
Efficient Data Redistribution Algorithms From Irregular to Block Cyclic Data Distribution. IEEE Trans. Parallel Distributed Syst. 33(12): 3667-3677 (2022) - [c20]Jiexi Jin, Hehu Xie, Peibing Du, Zhe Quan, Hao Jiang:
Design and Implementation of Compensated Gram-Schmidt Algorithm. HPCC/DSS/SmartCity/DependSys 2022: 870-875 - 2021
- [c19]Chuanying Li, Xiong Xiao, Peibing Du, Hao Jiang, Roberto Barrio, Zhe Quan, Kenli Li:
A High-Precision DQDS Algorithm. HPCC/DSS/SmartCity/DependSys 2021: 633-639 - [c18]Lin Chen, Kang He, Hao Jiang, Roberto Barrio, Jie Liu, Tiejun Li:
Quantization improvements for LU Decomposition to Solve Linear Equations. ISPA/BDCloud/SocialCom/SustainCom 2021: 1075-1082 - [c17]Kang He, Roberto Barrio, Lin Chen, Hao Jiang, Jie Liu, Tongxiang Gu, Jin Qi:
A Class of Fast and Accurate Multi-layer Block Summation and Dot Product Algorithms. NPC 2021: 64-75 - 2020
- [j29]Peibing Du, Hao Jiang:
On the Convergence of Bregman ADMM With Variational Inequality. IEEE Access 8: 29608-29615 (2020)
2010 – 2019
- 2019
- [j28]Xiaoya Zhang, Roberto Barrio, María Angeles Martínez Carballo, Hao Jiang, Lizhi Cheng:
Bregman Proximal Gradient Algorithm With Extrapolation for a Class of Nonconvex Nonsmooth Minimization Problems. IEEE Access 7: 126515-126529 (2019) - [j27]Chun Huang, Hao Jiang, Xiaoya Zhang:
Convergence of Bregman Multi-Stage Algorithm. IEEE Access 7: 153408-153416 (2019) - [j26]Tao Sun, Roberto Barrio, Hao Jiang, Lizhi Cheng:
Convergence rates of accelerated proximal gradient algorithms under independent noise. Numer. Algorithms 81(2): 631-654 (2019) - [j25]Xing Su, Xiangke Liao, Hao Jiang, Canqun Yang, Jingling Xue:
SCP: Shared Cache Partitioning for High-Performance GEMM. ACM Trans. Archit. Code Optim. 15(4): 43:1-43:21 (2019) - [j24]Tao Sun, Roberto Barrio, Marcos Rodríguez, Hao Jiang:
Inertial Nonconvex Alternating Minimizations for the Image Deblurring. IEEE Trans. Image Process. 28(12): 6211-6224 (2019) - [c16]Tao Sun, Penghang Yin, Dongsheng Li, Chun Huang, Lei Guan, Hao Jiang:
Non-Ergodic Convergence Analysis of Heavy-Ball Algorithms. AAAI 2019: 5033-5040 - [c15]Tao Sun, Dongsheng Li, Hao Jiang, Zhe Quan:
Iteratively Reweighted Penalty Alternating Minimization Methods with Continuation for Image Deblurring. ICASSP 2019: 3757-3761 - [c14]Tao Sun, Dongsheng Li, Zhe Quan, Hao Jiang, Shengguo Li, Yong Dou:
Heavy-ball Algorithms Always Escape Saddle Points. IJCAI 2019: 3520-3526 - [i6]Tao Sun, Dongsheng Li, Hao Jiang, Zhe Quan:
Iteratively reweighted penalty alternating minimization methods with continuation for image deblurring. CoRR abs/1902.04062 (2019) - [i5]Tao Sun, Dongsheng Li, Zhe Quan, Hao Jiang, Shengguo Li, Yong Dou:
Heavy-ball Algorithms Always Escape Saddle Points. CoRR abs/1907.09697 (2019) - [i4]Tao Sun, Roberto Barrio, Marcos Rodríguez, Hao Jiang:
Inertial nonconvex alternating minimizations for the image deblurring. CoRR abs/1907.12945 (2019) - 2018
- [j23]Tao Sun, Penghang Yin, Lizhi Cheng, Hao Jiang:
Alternating direction method of multipliers with difference of convex functions. Adv. Comput. Math. 44(3): 723-744 (2018) - [j22]Roberto Barrio, Peibing Du, Hao Jiang, Sergio Serrano:
ORTHOPOLY: A library for accurate evaluation of series of classical orthogonal polynomials and their derivatives. Comput. Phys. Commun. 231: 146-162 (2018) - [j21]Tao Sun, Roberto Barrio, Lizhi Cheng, Hao Jiang:
Precompact convergence of the nonconvex Primal-Dual Hybrid Gradient algorithm. J. Comput. Appl. Math. 330: 15-27 (2018) - [j20]Tao Sun, Hao Jiang, Lizhi Cheng, Wei Zhu:
Iteratively Linearized Reweighted Alternating Direction Method of Multipliers for a Class of Nonconvex Problems. IEEE Trans. Signal Process. 66(20): 5380-5391 (2018) - [c13]Jing Lan, Hao Jiang, Peibing Du:
Efficient and Accurate Evaluation of Bézier Tensor Product Surfaces. ICCS (2) 2018: 69-82 - 2017
- [j19]Peibing Du, Roberto Barrio, Hao Jiang, Lizhi Cheng:
Accurate quotient-difference algorithm: Error analysis, improvements and applications. Appl. Math. Comput. 309: 245-271 (2017) - [j18]Tao Sun, Peibing Du, Lizhi Cheng, Hao Jiang:
Alternating projection for sparse recovery. IET Signal Process. 11(2): 135-144 (2017) - [j17]Tao Sun, Lizhi Cheng, Hao Jiang:
Greedy method for robust linear regression. Neurocomputing 243: 125-132 (2017) - [j16]Tao Sun, Hao Jiang, Lizhi Cheng:
Global convergence of proximal iteratively reweighted algorithm. J. Glob. Optim. 68(4): 815-826 (2017) - [j15]Tao Sun, Hao Jiang, Lizhi Cheng:
Convergence of Proximal Iteratively Reweighted Nuclear Norm Algorithm for Image Processing. IEEE Trans. Image Process. 26(12): 5632-5644 (2017) - [c12]Chengcheng Huang, Wei Peng, Housen Li, Lizhi Cheng, Hao Jiang:
Computing Diagonals of Toeplitz Pentadiagonal Matrix Inverses via Matrix Möbius Transformations. ICNCC 2017: 69-74 - [c11]Xiaoya Zhang, Hao Jiang, Tao Sun, Lizhi Cheng, Chun Huang, Canqun Yang:
Projective Hard Thresholding Pursuit for Nonnegative Sparse Recovery. ISPA/IUCC 2017: 1152-1159 - [i3]Tao Sun, Hao Jiang, Lizhi Cheng:
Iteratively Linearized Reweighted Alternating Direction Method of Multipliers for a Class of Nonconvex Problems. CoRR abs/1709.00483 (2017) - 2016
- [j14]Hao Jiang, Stef Graillat, Roberto Barrio, Canqun Yang:
Accurate, validated and fast evaluation of elementary symmetric functions and its application. Appl. Math. Comput. 273: 1160-1178 (2016) - [j13]Tao Sun, Roberto Barrio, Hao Jiang, Lizhi Cheng:
Local Linear Convergence of a Primal-Dual Algorithm for the Augmented Convex Models. J. Sci. Comput. 69(3): 1301-1315 (2016) - [j12]Shengguo Li, Xiangke Liao, Jie Liu, Hao Jiang:
New fast divide-and-conquer algorithms for the symmetric tridiagonal eigenvalue problem. Numer. Linear Algebra Appl. 23(4): 656-673 (2016) - [c10]Luxia Feng, Yushan Dong, Chunjiang Li, Hao Jiang:
High Performance Stencil Computations for IntelⓇ Xeon Phi™ Coprocessor. ACA 2016: 108-117 - [c9]Hao Jiang, Tao Sun, Peibing Du, Shengguo Li, Chunjiang Li, Lizhi Cheng:
A Note on the Guarantees of Total Variation Minimization. ICIC (2) 2016: 222-231 - [c8]Peibing Du, Hao Jiang, Lizhi Cheng:
Design and Implementation of Mixed Extended-Precision Package in MATLAB. ICPADS 2016: 1251-1256 - [c7]Peibing Du, Hao Jiang, Housen Li, Lizhi Cheng, Canqun Yang:
Accurate Evaluation of Bivariate Polynomials. PDCAT 2016: 51-56 - [c6]Hao Jiang, Peibing Du, Tao Sun, Housen Li, Lizhi Cheng, Canqun Yang:
Bilateral Sampling Randomized Singular Value Decomposition. PDCAT 2016: 57-62 - [i2]Tao Sun, Lizhi Cheng, Hao Jiang:
A note on the convergence of nonconvex line search. CoRR abs/1603.06912 (2016) - 2015
- [c5]Hao Jiang, Feng Wang, Kuan Li, Canqun Yang, Kejia Zhao, Chun Huang:
Implementation of an Accurate and Efficient Compensated DGEMM for 64-bit ARMv8 Multi-Core Processors. ICPADS 2015: 491-498 - [c4]Feng Wang, Hao Jiang, Ke Zuo, Xing Su, Jingling Xue, Canqun Yang:
Design and Implementation of a Highly Efficient DGEMM for 64-Bit ARMv8 Multi-core Processors. ICPP 2015: 200-209 - [i1]Shengguo Li, Xiangke Liao, Jie Liu, Hao Jiang:
New fast divide-and-conquer algorithms for the symmetric tridiagonal eigenvalue problem. CoRR abs/1510.04591 (2015) - 2014
- [j11]Peibing Du, Hao Jiang, Lizhi Cheng:
Accurate Evaluation of Polynomials in Legendre Basis. J. Appl. Math. 2014: 742538:1-742538:13 (2014) - [c3]Cheng Chen, Yunfei Du, Hao Jiang, Ke Zuo, Canqun Yang:
HPCG: Preliminary Evaluation and Optimization on Tianhe-2 CPU-only Nodes. SBAC-PAD 2014: 41-48 - 2013
- [j10]Hao Jiang, Stef Graillat, Canbin Hu, Shengguo Li, Xiangke Liao, Lizhi Cheng, Fang Su:
Accurate evaluation of the k-th derivative of a polynomial and its application. J. Comput. Appl. Math. 243: 28-47 (2013) - [j9]Hao Jiang, Housen Li, Lizhi Cheng, Roberto Barrio, Canbin Hu, Xiangke Liao:
Accurate, Validated and Fast Evaluation of Bézier Tensor Product Surfaces. Reliab. Comput. 18: 55-72 (2013) - [j8]Roberto Barrio, Hao Jiang, Sergio Serrano:
A General Condition Number for Polynomials. SIAM J. Numer. Anal. 51(2): 1280-1294 (2013) - [c2]Hao Jiang, Stef Graillat, Roberto Barrio:
Accurate and Fast Evaluation of Elementary Symmetric Functions. IEEE Symposium on Computer Arithmetic 2013: 183-190 - 2012
- [j7]Fang Su, Zhan Xu, Jun-zhi Cui, Xinpeng Du, Hao Jiang:
Multiscale computation method for an advection-diffusion equation. Appl. Math. Comput. 218(14): 7369-7374 (2012) - [j6]Hao Jiang, Stef Graillat, Roberto Barrio:
Accurate computing elementary symmetric functions. ACM Commun. Comput. Algebra 46(3/4): 102-103 (2012) - 2011
- [j5]Fang Su, Zhan Xu, Qiao-Li Dong, Hao Jiang:
Multiscale computation method for parabolic problems of composite materials. Appl. Math. Comput. 217(21): 8337-8342 (2011) - [j4]Hao Jiang, Roberto Barrio, Housen Li, Xiangke Liao, Lizhi Cheng, Fang Su:
Accurate evaluation of a polynomial in Chebyshev form. Appl. Math. Comput. 217(23): 9702-9716 (2011) - [j3]Shengguo Li, Hao Jiang, Lizhi Cheng, Xiangke Liao:
IGAOR and multisplitting IGAOR methods for linear complementarity problems. J. Comput. Appl. Math. 235(9): 2904-2912 (2011) - [j2]Housen Li, Hao Jiang, Roberto Barrio, Xiangke Liao, Lizhi Cheng, Fang Su:
Incremental manifold learning by spectral embedding methods. Pattern Recognit. Lett. 32(10): 1447-1455 (2011) - 2010
- [j1]Hao Jiang, Shengguo Li, Lizhi Cheng, Fang Su:
Accurate evaluation of a polynomial and its derivative in Bernstein form. Comput. Math. Appl. 60(3): 744-755 (2010)
2000 – 2009
- 2009
- [c1]Rongfen Lin, Hao Jiang, Lizhi Cheng:
Solving Nonsmooth Interval Equations with Slopes. SYNASC 2009: 142-149
Coauthor Index
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