default search action
Chao Yang 0002
Person information
- unicode name: 杨超
- affiliation: Peking University, Beijing, China
- affiliation (former): Chinese Academy of Sciences, Institute of Software, Beijing, China
Other persons with the same name
- Chao Yang — disambiguation page
- Chao Yang 0001 — Lawrence Berkeley National Laboratory, Computational Research Division, CA, USA
- Chao Yang 0003 — Sun Yat-Sen University, School of Mathematics, Guangzhou, China (and 1 more)
- Chao Yang 0004 — Chinese Academy of Sciences, Institute of Process Engineering, Beijing, China
- Chao Yang 0005 — Guangdong University of Technology, School of Automation, Guangzhou, China (and 2 more)
- Chao Yang 0006 — Yanshan University, Institute of Electric Engineering, Qinhuangdao, China (and 1 more)
- Chao Yang 0007 — China University of Geosciences, National Engineering Research Center of Geographic Information System, Wuhan, China
- Chao Yang 0008 — Hunan University, College of Mathematics and Econometrics, Changsha, China
- Chao Yang 0009 — East China University of Science and Technology, Key Laboratory of Advanced Control and Optimization for Chemical Processes, Shanghai, China (and 1 more)
- Chao Yang 0010 — Shenzhen University, College of Information Engineering / Key Laboratory of Spatial Smart Sensing and Services, China
- Chao Yang 0011 — University of Southern California, Department of Computer Science, Los Angeles, CA, USA
- Chao Yang 0012 — National Digital Switching System Engineering and Technological Research Center, Zhengzhou, China
- Chao Yang 0013 — Tsinghua University, School of Public Policy and Management, Beijing, China (and 1 more)
- Chao Yang 0014 — Guilin University of Electronic Technology, MOE Key Laboratory of Cognitive Radio and Signal Processing, China
- Chao Yang 0015 — Hunan University, College of Computer Science and Electronic Engineering, Changsha, China (and 2 more)
- Chao Yang 0016 — Xidian University, School of Cyber Engineering, Xi'an, China
- Chao Yang 0017 — Central South University, School of Information Science and Engineering, Changsha, China
- Chao Yang 0018 — National University of Defense Technology, College of Computer, Changsha, China
- Chao Yang 0019 — Northeastern University, Shenyang, China (and 1 more)
- Chao Yang 0020 — University of Newcastle Upon Tyne, UK
- Chao Yang 0021 — Shanghai University, School of Communication and Information Engineering, Shanghai Institute for Advanced Communication and Data Science, China (and 2 more)
- Chao Yang 0022 — Texas A&M University, Department of Computer Science and Engineering, College Station, TX, USA
- Chao Yang 0023 — University of Electronic Science and Technology of China, School of Life Science and Technology, Center of Bioinformatics, Chengdu, China
- Chao Yang 0024 — University of Technology Sydney, Australia (and 1 more)
- Chao Yang 0025 — Auburn University, Department of Electrical and Computer Engineering, USA
- Chao Yang 0026 — Tsinghua University, Beijing National Research Center for Information Science and Technology, Institute for Artificial Intelligence, Beijing, China
- Chao Yang 0027 — Southeast University, LEADS, National Mobile Communications Research Laboratory, Nanjing, China
- Chao Yang 0028 — Southwest Jiaotong University, Faculty of Geosciences and Environmental Engineering, Chengdu, China
- Chao Yang 0029 — Northwest Institute of Nuclear Technology, Xi'an, China (and 1 more)
- Chao Yang 0030 — Marvell Semiconductor, Austin, TX, USA (and 1 more)
- Chao Yang 0031 — Mobvoi Inc., WeNet Open Source Community, Beijing, China
- Chao Yang 0032 — Shanghai University of Engineering Science, School of Mathematics, Physics and Statistics, China (and 1 more)
- Chao Yang 0033 — University of Electronic Science and Technology of China, State Key Laboratory of Electronic Thin Films and Integrated Devices, Chengdu, China
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j50]Xili Wang, Pengfei Yin, Bo Zhang, Chao Yang:
AONN-2: An adjoint-oriented neural network method for PDE-constrained shape optimization. J. Comput. Phys. 513: 113160 (2024) - [j49]Xili Wang, Kejun Tang, Jiayu Zhai, Xiaoliang Wan, Chao Yang:
Deep Adaptive Sampling for Surrogate Modeling Without Labeled Data. J. Sci. Comput. 101(3): 77 (2024) - [j48]Pengfei Yin, Guangqiang Xiao, Kejun Tang, Chao Yang:
AONN: An Adjoint-Oriented Neural Network Method for All-At-Once Solutions of Parametric Optimal Control Problems. SIAM J. Sci. Comput. 46(1): 127- (2024) - [j47]Haijian Yang, Rui Li, Chao Yang:
Nonlinearly Constrained Pressure Residual (NCPR) Algorithms for Fractured Reservoir Simulation. SIAM J. Sci. Comput. 46(1): 561- (2024) - [j46]Tianpei Cheng, Haijian Yang, Jizu Huang, Chao Yang:
Adaptive Space-Time Domain Decomposition for Multiphase Flow in Porous Media with Bound Constraints. SIAM J. Sci. Comput. 46(3): 306- (2024) - [c34]Chang Chen, Xiuhong Li, Qianchao Zhu, Jiangfei Duan, Peng Sun, Xingcheng Zhang, Chao Yang:
Centauri: Enabling Efficient Scheduling for Communication-Computation Overlap in Large Model Training via Communication Partitioning. ASPLOS (3) 2024: 178-191 - [c33]Jinming Ma, Xiuhong Li, Zihan Wang, Xingcheng Zhang, Shengen Yan, Yuting Chen, Yueqian Zhang, Minxi Jin, Lijuan Jiang, Yun Liang, Chao Yang, Dahua Lin:
A Holistic Functionalization Approach to Optimizing Imperative Tensor Programs in Deep Learning. DAC 2024: 200:1-200:6 - [c32]Kejun Tang, Jiayu Zhai, Xiaoliang Wan, Chao Yang:
Adversarial Adaptive Sampling: Unify PINN and Optimal Transport for the Approximation of PDEs. ICLR 2024 - [c31]Siran Liu, Chengxiang Qi, Ying Cao, Chao Yang, Weifang Hu, Xuanhua Shi, Fan Yang, Mao Yang:
Uncovering Nested Data Parallelism and Data Reuse in DNN Computation with FractalTensor. SOSP 2024: 160-177 - [i17]Xili Wang, Kejun Tang, Jiayu Zhai, Xiaoliang Wan, Chao Yang:
Deep adaptive sampling for surrogate modeling without labeled data. CoRR abs/2402.11283 (2024) - [i16]Chuanfu Xiao, Zeyu Li, Chao Yang:
HOSCF: Efficient decoupling algorithms for finding the best rank-one approximation of higher-order tensors. CoRR abs/2403.01778 (2024) - [i15]Zhitao Zhu, Chuanfu Xiao, Kejun Tang, Jizu Huang, Chao Yang:
APTT: An accuracy-preserved tensor-train method for the Boltzmann-BGK equation. CoRR abs/2405.12524 (2024) - [i14]Qianchao Zhu, Jiangfei Duan, Chang Chen, Siran Liu, Xiuhong Li, Guanyu Feng, Xin Lv, Huanqi Cao, Xiao Chuanfu, Xingcheng Zhang, Dahua Lin, Chao Yang:
SampleAttention: Near-Lossless Acceleration of Long Context LLM Inference with Adaptive Structured Sparse Attention. CoRR abs/2406.15486 (2024) - [i13]Zhonghao Sun, Jizu Huang, Chuanfu Xiao, Chao Yang:
HaTT: Hadamard avoiding TT recompression. CoRR abs/2410.04385 (2024) - 2023
- [j45]Lian Duan, Chuanfu Xiao, Min Li, Mingshuo Ding, Chao Yang:
a-Tucker: fast input-adaptive and matricization-free Tucker decomposition of higher-order tensors on GPUs. CCF Trans. High Perform. Comput. 5(1): 12-25 (2023) - [j44]Fangfang Liu, Wenjing Ma, Yuwen Zhao, Daokun Chen, Yi Hu, Qinglin Lu, Wanwang Yin, Xinhui Yuan, Lijuan Jiang, Hao Yan, Min Li, Hongsen Wang, Xinyu Wang, Chao Yang:
xMath2.0: a high-performance extended math library for SW26010-Pro many-core processor. CCF Trans. High Perform. Comput. 5(1): 56-71 (2023) - [j43]Fangfang Liu, Wenjing Ma, Yuwen Zhao, Daokun Chen, Yi Hu, Qinglin Lu, Wanwang Yin, Xinhui Yuan, Lijuan Jiang, Hao Yan, Min Li, Hongsen Wang, Xinyu Wang, Chao Yang:
Publisher Correction: xMath2.0: a high-performance extended math library for SW26010-Pro many-core processor. CCF Trans. High Perform. Comput. 5(1): 97 (2023) - [j42]Kejun Tang, Xiaoliang Wan, Chao Yang:
DAS-PINNs: A deep adaptive sampling method for solving high-dimensional partial differential equations. J. Comput. Phys. 476: 111868 (2023) - [j41]Tianpei Cheng, Haijian Yang, Jizu Huang, Chao Yang:
Nonlinear parallel-in-time simulations of multiphase flow in porous media. J. Comput. Phys. 494: 112515 (2023) - [c30]Cuiyu Liu, Chuanfu Xiao, Mingshuo Ding, Chao Yang:
Tensor-Based Sketching Method for the Low-Rank Approximation of Data Streams. ICLR 2023 - [i12]Kejun Tang, Jiayu Zhai, Xiaoliang Wan, Chao Yang:
Adversarial Adaptive Sampling: Unify PINN and Optimal Transport for the Approximation of PDEs. CoRR abs/2305.18702 (2023) - 2022
- [j40]Nian Yang, Haijian Yang, Chao Yang:
Multilevel field-split preconditioners with domain decomposition for steady and unsteady flow problems. Comput. Phys. Commun. 280: 108496 (2022) - [j39]Liang Yin, Chao Yang, Shi-Zhuang Ma, Ying Cai, Keke Zhang:
Parallel finite volume simulation of the spherical shell dynamo with pseudo-vacuum magnetic boundary conditions. J. Comput. Phys. 451: 110866 (2022) - [j38]Tianpei Cheng, Haijian Yang, Chao Yang, Shuyu Sun:
Scalable semismooth Newton methods with multilevel domain decomposition for subsurface flow and reactive transport in porous media. J. Comput. Phys. 467: 111440 (2022) - [c29]Lijuan Jiang, Ping Xu, Qianchao Zhu, Xiuhong Li, Shengen Yan, Xingcheng Zhang, Dahua Lin, Wenjing Ma, Zhouyang Li, Jun Liu, Jinming Ma, Minxi Jin, Chao Yang:
EasyView: Enabling and Scheduling Tensor Views in Deep Learning Compilers. ICPP 2022: 54:1-54:11 - [i11]Jizu Huang, Chao Yang:
Parallel energy stable phase field simulations of Ni-based alloys system. CoRR abs/2209.08001 (2022) - [i10]Cuiyu Liu, Chuanfu Xiao, Mingshuo Ding, Chao Yang:
Tensor-Based Sketching Method for the Low-Rank Approximation of Data Streams. CoRR abs/2209.14637 (2022) - 2021
- [j37]Peng Zhang, Chao Yang, Yulong Ao:
AutoWM: a novel domain-specific tool for universal multi-/many-core accelerations of the WRF cloud microphysics. Clust. Comput. 24(2): 935-951 (2021) - [j36]Haijian Yang, Chao Yang, Jizu Huang:
Variational inequality transport model on the sphere by the active-set reduced-space algorithm. Comput. Phys. Commun. 260: 107739 (2021) - [j35]Chuanfu Xiao, Chao Yang, Min Li:
Efficient Alternating Least Squares Algorithms for Low Multilinear Rank Approximation of Tensors. J. Sci. Comput. 87(3): 67 (2021) - [j34]Min Li, Yulong Ao, Chao Yang:
Adaptive SpMV/SpMSpV on GPUs for Input Vectors of Varied Sparsity. IEEE Trans. Parallel Distributed Syst. 32(7): 1842-1853 (2021) - [i9]Chuanfu Xiao, Chao Yang:
A rank-adaptive higher-order orthogonal iteration algorithm for truncated Tucker decomposition. CoRR abs/2110.12564 (2021) - [i8]Kejun Tang, Xiaoliang Wan, Chao Yang:
DAS: A deep adaptive sampling method for solving partial differential equations. CoRR abs/2112.14038 (2021) - 2020
- [j33]Wenjing Ma, Yulong Ao, Chao Yang, Samuel Williams:
Solving a trillion unknowns per second with HPGMG on Sunway TaihuLight. Clust. Comput. 23(2): 493-507 (2020) - [j32]Rui Li, Haijian Yang, Chao Yang:
Parallel multilevel restricted Schwarz preconditioners for implicit simulation of subsurface flows with Peng-Robinson equation of state. J. Comput. Phys. 422: 109745 (2020) - [j31]Biying Yan, Chao Yang, Pan Deng, Qiao Sun, Feng Chen, Yang Yu:
A Spatiotemporal Causality Based Governance Framework for Noisy Urban Sensory Data. J. Comput. Sci. Technol. 35(5): 1084-1098 (2020) - [j30]Jizu Huang, Chao Yang, Ying Wei:
Parallel Energy-Stable Solver for a Coupled Allen-Cahn and Cahn-Hilliard System. SIAM J. Sci. Comput. 42(5): C294-C312 (2020) - [j29]Lijuan Jiang, Chao Yang, Wenjing Ma:
Enabling Highly Efficient Batched Matrix Multiplications on SW26010 Many-core Processor. ACM Trans. Archit. Code Optim. 17(1): 3:1-3:23 (2020) - [i7]Chuanfu Xiao, Chao Yang, Min Li:
Efficient Alternating Least Squares Algorithms for Truncated HOSVD of Higher-Order Tensors. CoRR abs/2004.02583 (2020) - [i6]Min Li, Yulong Ao, Chao Yang:
Adaptive SpMV/SpMSpV on GPUs for Input Vectors of Varied Sparsity. CoRR abs/2006.16767 (2020) - [i5]Jizu Huang, Chao Yang, Ying Wei:
Parallel energy-stable solver for a coupled Allen-Cahn and Cahn-Hilliard system. CoRR abs/2007.04560 (2020) - [i4]Rui Li, Haijian Yang, Chao Yang:
Parallel multilevel restricted Schwarz preconditioners for implicit simulation of subsurface flows with Peng-Robinson equation of state. CoRR abs/2007.13966 (2020) - [i3]Liang Yin, Chao Yang, Shi-Zhuang Ma, Ying Cai, Keke Zhang:
Parallel finite volume simulation of the spherical shell dynamo with pseudo-vacuum magnetic boundary conditions. CoRR abs/2009.02171 (2020) - [i2]Min Li, Chuanfu Xiao, Chao Yang:
a-Tucker: Input-Adaptive and Matricization-Free Tucker Decomposition for Dense Tensors on CPUs and GPUs. CoRR abs/2010.10131 (2020)
2010 – 2019
- 2019
- [j28]Ying Wei, Chao Yang, Jizu Huang:
Parallel energy-stable phase field crystal simulations based on domain decomposition methods. Comput. Phys. Commun. 234: 26-39 (2019) - [j27]Haijian Yang, Shuyu Sun, Yiteng Li, Chao Yang:
Parallel reservoir simulators for fully implicit complementarity formulation of multicomponent compressible flows. Comput. Phys. Commun. 244: 2-12 (2019) - [j26]Haijian Yang, Shuyu Sun, Yiteng Li, Chao Yang:
A fully implicit constraint-preserving simulator for the black oil model of petroleum reservoirs. J. Comput. Phys. 396: 347-363 (2019) - [j25]Min Li, Chao Yang, Qiao Sun, Wenjing Ma, Wenlong Cao, Yulong Ao:
Enabling Highly Efficient k-Means Computations on the SW26010 Many-Core Processor of Sunway TaihuLight. J. Comput. Sci. Technol. 34(1): 77-93 (2019) - [j24]Jingheng Xu, Guangwen Yang, Haohuan Fu, Wayne Luk, Lin Gan, Wen Shi, Wei Xue, Chao Yang, Yong Jiang, Conghui He:
Optimizing Finite Volume Method Solvers on Nvidia GPUs. IEEE Trans. Parallel Distributed Syst. 30(12): 2790-2805 (2019) - 2018
- [j23]Yulong Ao, Chao Yang, Fangfang Liu, Wanwang Yin, Lijuan Jiang, Qiao Sun:
Performance Optimization of the HPCG Benchmark on the Sunway TaihuLight Supercomputer. ACM Trans. Archit. Code Optim. 15(1): 11:1-11:20 (2018) - [j22]Ying Cai, Yulong Ao, Chao Yang, Wenjing Ma, Haitao Zhao:
Extreme-Scale High-Order WENO Simulations of 3-D Detonation Wave with 10 Million Cores. ACM Trans. Archit. Code Optim. 15(2): 26:1-26:21 (2018) - [j21]Lixin He, Hong An, Chao Yang, Fei Wang, Junshi Chen, Chao Wang, Weihao Liang, Shao-Jun Dong, Qiao Sun, Wenting Han, Wenyuan Liu, Yongjian Han, Wenjun Yao:
PEPS++: Towards Extreme-Scale Simulations of Strongly Correlated Quantum Many-Particle Models on Sunway TaihuLight. IEEE Trans. Parallel Distributed Syst. 29(12): 2838-2848 (2018) - [c28]Ying Cai, Chao Yang, Wenjing Ma, Yulong Ao:
Extreme-Scale Realistic Stencil Computations on Sunway TaihuLight with Ten Million Cores. CCGrid 2018: 566-571 - [c27]Xinliang Wang, Ping Xu, Wei Xue, Yulong Ao, Chao Yang, Haohuan Fu, Lin Gan, Guangwen Yang, Weimin Zheng:
A Fast Sparse Triangular Solver for Structured-grid Problems on Sunway Many-core Processor SW26010. ICPP 2018: 53:1-53:11 - 2017
- [j20]Gang Ren, Qingsong Hua, Pan Deng, Chao Yang, Jianwei Zhang:
A Multi-Perspective Method for Analysis of Cooperative Behaviors Among Industrial Devices of Smart Factory. IEEE Access 5: 10882-10891 (2017) - [j19]Haijian Yang, Shuyu Sun, Chao Yang:
Nonlinearly preconditioned semismooth Newton methods for variational inequality solution of two-phase flow in porous media. J. Comput. Phys. 332: 1-20 (2017) - [j18]Lin Gan, Haohuan Fu, Wayne Luk, Chao Yang, Wei Xue, Guangwen Yang:
Solving Mesoscale Atmospheric Dynamics Using a Reconfigurable Dataflow Architecture. IEEE Micro 37(4): 40-50 (2017) - [j17]Peng Zhang, Chao Yang, Chungang Chen, Xingliang Li, Xueshun Shen, Feng Xiao:
Development of a hybrid parallel MCV-based high-order global shallow-water model. J. Supercomput. 73(6): 2823-2842 (2017) - [c26]Gang Ren, Qingsong Hua, Pan Deng, Chao Yang:
FP-MRBP: Fine-grained Parallel MapReduce Back Propagation Algorithm. ICANN (2) 2017: 680-687 - [c25]Lijuan Jiang, Chao Yang, Yulong Ao, Wanwang Yin, Wenjing Ma, Qiao Sun, Fangfang Liu, Rongfen Lin, Peng Zhang:
Towards Highly Efficient DGEMM on the Emerging SW26010 Many-Core Processor. ICPP 2017: 422-431 - [c24]Yulong Ao, Chao Yang, Xinliang Wang, Wei Xue, Haohuan Fu, Fangfang Liu, Lin Gan, Ping Xu, Wenjing Ma:
26 PFLOPS Stencil Computations for Atmospheric Modeling on Sunway TaihuLight. IPDPS 2017: 535-544 - [c23]Gang Ren, Pan Deng, Chao Yang:
A 3-Layer Method for Analysis of Cooperative Behaviors of Physical Devices in Cyber-Physical Systems. WASA 2017: 741-754 - [i1]Ying Wei, Chao Yang, Jizu Huang:
Parallel energy-stable phase field crystal simulations based on domain decomposition methods. CoRR abs/1703.01202 (2017) - 2016
- [j16]Haohuan Fu, Junfeng Liao, Jinzhe Yang, Lanning Wang, Zhenya Song, Xiaomeng Huang, Chao Yang, Wei Xue, Fangfang Liu, Fangli Qiao, Wei Zhao, Xunqiang Yin, Chaofeng Hou, Chenglong Zhang, Wei Ge, Jian Zhang, Yangang Wang, Chunbo Zhou, Guangwen Yang:
The Sunway TaihuLight supercomputer: system and applications. Sci. China Inf. Sci. 59(7): 072001:1-072001:16 (2016) - [j15]Yiqung Liu, Chao Yang, Fangfang Liu, Xianyi Zhang, Yutong Lu, Yunfei Du, Canqun Yang, Min Xie, Xiangke Liao:
623 Tflop/s HPCG run on Tianhe-2: Leveraging millions of hybrid cores. Int. J. High Perform. Comput. Appl. 30(1): 39-54 (2016) - [j14]Jizu Huang, Chao Yang, Xiao-Chuan Cai:
A Nonlinearly Preconditioned Inexact Newton Algorithm for Steady State Lattice Boltzmann Equations. SIAM J. Sci. Comput. 38(3) (2016) - [j13]Haijian Yang, Chao Yang, Shuyu Sun:
Active-Set Reduced-Space Methods with Nonlinear Elimination for Two-Phase Flow Problems in Porous Media. SIAM J. Sci. Comput. 38(4) (2016) - [c22]Haohuan Fu, Jingheng Xu, Lin Gan, Chao Yang, Wei Xue, Wenlai Zhao, Wen Shi, Xinliang Wang, Guangwen Yang:
Unleashing the performance potential of CPU-GPU platforms for the 3D atmospheric Euler solver. ASAP 2016: 41-49 - [c21]Jingheng Xu, Haohuan Fu, Lin Gan, Chao Yang, Wei Xue, Shizhen Xu, Wenlai Zhao, Xinliang Wang, Bingwei Chen, Guangwen Yang:
Generalized GPU Acceleration for Applications Employing Finite-Volume Methods. CCGrid 2016: 126-135 - [c20]Qiao Sun, Chao Yang, Changmao Wu, Leisheng Li, Fangfang Liu:
Fast Parallel Stream Compaction for IA-Based Multi/many-core Processors. CCGrid 2016: 736-745 - [c19]Jingheng Xu, Haohuan Fu, Lin Gan, Chao Yang, Wei Xue, Guangwen Yang:
Accelerating the 3D euler atmospheric solver through heterogeneous CPU-GPU platforms. Conf. Computing Frontiers 2016: 353-356 - [c18]Changmao Wu, Fangfang Liu, Chao Yang, Ligang Li, Haitao Zhao, Yutong Lu, Leisheng Li, Yunfei Du:
Accelerating the Simulation of Thermal Convection in the Earth's Outer Core on Tianhe-2. ICPADS 2016: 800-809 - [c17]Chao Yang, Wei Xue, Haohuan Fu, Hongtao You, Xinliang Wang, Yulong Ao, Fangfang Liu, Lin Gan, Ping Xu, Lanning Wang, Guangwen Yang, Weimin Zheng:
10M-core scalable fully-implicit solver for nonhydrostatic atmospheric dynamics. SC 2016: 57-68 - 2015
- [j12]Wei Yuan, Pan Deng, Chao Yang, Jiafu Wan, Daqiang Zhang, Xiantong Chen, Chaofan Bi, Yali Liu:
A Smart Work Performance Measurement System for Police Officers. IEEE Access 3: 1755-1764 (2015) - [j11]Jizu Huang, Liqun Cao, Chao Yang:
A multiscale algorithm for radiative heat transfer equation with rapidly oscillating coefficients. Appl. Math. Comput. 266: 149-168 (2015) - [j10]Xiang Zheng, Chao Yang, Xiao-Chuan Cai, David E. Keyes:
A parallel domain decomposition-based implicit method for the Cahn-Hilliard-Cook phase-field equation in 3D. J. Comput. Phys. 285: 55-70 (2015) - [j9]Jizu Huang, Chao Yang, Xiao-Chuan Cai:
A Fully Implicit Method for Lattice Boltzmann Equations. SIAM J. Sci. Comput. 37(5) (2015) - [j8]Wei Xue, Chao Yang, Haohuan Fu, Xinliang Wang, Yangtong Xu, Junfeng Liao, Lin Gan, Yutong Lu, Rajiv Ranjan, Lizhe Wang:
Ultra-Scalable CPU-MIC Acceleration of Mesoscale Atmospheric Modeling on Tianhe-2. IEEE Trans. Computers 64(8): 2382-2393 (2015) - [j7]Lin Gan, Haohuan Fu, Wayne Luk, Chao Yang, Wei Xue, Xiaomeng Huang, Youhui Zhang, Guangwen Yang:
Solving the Global Atmospheric Equations through Heterogeneous Reconfigurable Platforms. ACM Trans. Reconfigurable Technol. Syst. 8(2): 11:1-11:16 (2015) - [c16]Gang Ren, Pan Deng, Chao Yang, Jianwei Zhang, Qingsong Hua:
A Formal Approach for Modeling and Verification of Distributed Systems. CloudComp 2015: 317-322 - [c15]Yulong Ao, Yiqung Liu, Chao Yang, Fangfang Liu, Peng Zhang, Yutong Lu, Yunfei Du:
Performance Evaluation of HPGMG on Tianhe-2: Early Experience. ICA3PP (4) 2015: 230-243 - [c14]Peng Zhang, Yulong Ao, Chao Yang, Yiqung Liu, Fangfang Liu, Changmao Wu, Haitao Zhao:
Pattern-Driven Hybrid Multi- and Many-Core Acceleration in the MPAS Shallow-Water Model. ICPP 2015: 71-80 - 2014
- [j6]Haijian Yang, Chao Yang, Xiao-Chuan Cai:
Parallel Domain Decomposition Methods with Mixed Order Discretization for Fully Implicit Solution of Tracer Transport Problems on the Cubed-Sphere. J. Sci. Comput. 61(2): 258-280 (2014) - [j5]Chao Yang, Xiao-Chuan Cai:
A Scalable Fully Implicit Compressible Euler Solver for Mesoscale Nonhydrostatic Simulation of Atmospheric Flows. SIAM J. Sci. Comput. 36(5) (2014) - [c13]Lin Gan, Haohuan Fu, Chao Yang, Wayne Luk, Wei Xue, Oskar Mencer, Xiaomeng Huang, Guangwen Yang:
A highly-efficient and green data flow engine for solving euler atmospheric equations. FPL 2014: 1-6 - [c12]Qiao Sun, Chao Yang:
Optimization of scan algorithms on multi- and many-core processors. HiPC 2014: 1-10 - [c11]Xianyi Zhang, Chao Yang, Fangfang Liu, Yiqung Liu, Yutong Lu:
Optimizing and Scaling HPCG on Tianhe-2: Early Experience. ICA3PP (1) 2014: 28-41 - [c10]Lin Gan, Haohuan Fu, Wei Xue, Yangtong Xu, Chao Yang, Xinliang Wang, Zihong Lv, Yang You, Guangwen Yang, Kaijian Ou:
Scaling and analyzing the stencil performance on multi-core and many-core architectures. ICPADS 2014: 103-110 - [c9]Yiqung Liu, Xianyi Zhang, Chao Yang, Fangfang Liu, Yutong Lu:
Accelerating HPCG on Tianhe-2: A hybrid CPU-MIC algorithm. ICPADS 2014: 542-551 - [c8]Wei Xue, Chao Yang, Haohuan Fu, Xinliang Wang, Yangtong Xu, Lin Gan, Yutong Lu, Xiaoqian Zhu:
Enabling and Scaling a Global Shallow-Water Atmospheric Model on Tianhe-2. IPDPS 2014: 745-754 - 2013
- [c7]Lin Gan, Haohuan Fu, Wayne Luk, Chao Yang, Wei Xue, Guangwen Yang:
Global Atmospheric Simulation on a Reconfigurable Platform. FCCM 2013: 230 - [c6]Lin Gan, Haohuan Fu, Wayne Luk, Chao Yang, Wei Xue, Xiaomeng Huang, Youhui Zhang, Guangwen Yang:
Accelerating solvers for global atmospheric equations through mixed-precision data flow engine. FPL 2013: 1-6 - [c5]Chao Yang, Xiao-Chuan Cai:
A Scalable Implicit Solver for Phase Field Crystal Simulations. IPDPS Workshops 2013: 1409-1416 - [c4]Chao Yang, Wei Xue, Haohuan Fu, Lin Gan, Linfeng Li, Yangtong Xu, Yutong Lu, Jiachang Sun, Guangwen Yang, Weimin Zheng:
A peta-scalable CPU-GPU algorithm for global atmospheric simulations. PPoPP 2013: 1-12 - [p1]Chao Yang, Xiao-Chuan Cai:
A Fully Implicit Compressible Euler Solver for Atmospheric Flows. Domain Decomposition Methods in Science and Engineering XX 2013: 679-686 - 2012
- [j4]Chao Yang, Jiachang Sun:
New six-node and seven-node hexagonal finite elements. Appl. Math. Comput. 218(24): 11763-11774 (2012) - 2011
- [j3]Chao Yang, Xiao-Chuan Cai:
A parallel well-balanced finite volume method for shallow water equations with topography on the cubed-sphere. J. Comput. Appl. Math. 235(18): 5357-5366 (2011) - [j2]Chao Yang, Xiao-Chuan Cai:
Parallel multilevel methods for implicit solution of shallow water equations with nonsmooth topography on the cubed-sphere. J. Comput. Phys. 230(7): 2523-2539 (2011) - 2010
- [j1]Chao Yang, Jianwen Cao, Xiao-Chuan Cai:
A Fully Implicit Domain Decomposition Algorithm for Shallow Water Equations on the Cubed-Sphere. SIAM J. Sci. Comput. 32(1): 418-438 (2010) - [c3]Chao Yang, Yunquan Zhang, Ligang Li:
Numerical Simulation of the Thermal Convection in the Earth's Outer Core. HPCC 2010: 552-555 - [c2]Chao Yang, Xiao-Chuan Cai:
Scalability Studies of an Implicit Shallow Water Solver for the Rossby-Haurwitz Problem. VECPAR 2010: 172-184
2000 – 2009
- 2009
- [c1]Chao Yang, Ligang Li, Yunquan Zhang:
Development of a Scalable Solver for the Earth's Core Convection. HPCA (China) 2009: 497-502
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-12-26 01:51 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint