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Hao Ye 0001
Person information
- affiliation: Tsinghua University, Department of Automation, TNList, Beijing, China
Other persons with the same name
- Hao Ye — disambiguation page
- Hao Ye 0002 — University of Texas at Dallas, School of Engineering and Computer Science, TX, USA
- Hao Ye 0003
— University of Pennsylvania, Philadelphia, PA, USA (and 2 more) - Hao Ye 0004
— University of California Santa Cruz, Department of Electrical and Computer Engineering, CA, USA (and 1 more) - Hao Ye 0005
— Videt Tech Ltd., Shanghai, China (and 2 more)
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2020 – today
- 2026
[j37]Lezhou Wu
, Zhongcan Li
, Wei Dong
, Hao Ye
, Ming Jiang:
Integrated scheduling method for heavy-haul transportation with virtual coupling based on two-phase optimization strategy. Expert Syst. Appl. 297: 129326 (2026)- 2025
[j36]Jianye Xue
, Tongshuai Zhang
, Hao Ye
:
KPI-oriented process monitoring based on causal-weighted partial least squares. Inf. Sci. 689: 121470 (2025)
[j35]Kang Li
, Hao Ye
, Xiaoyong Gao
, Laibin Zhang
:
Meta-Learning With Intraclass and Interclass Optimization for Few-Shot Fault Diagnosis. IEEE Trans. Ind. Informatics 21(1): 713-722 (2025)
[j34]Ju Liu
, Jiayi Zhao
, Hao Ye
, Dexian Huang
, Chao Shang
:
A Novel Accuracy-Constrained Scheme for Efficient Trend Extraction of Industrial Time-Series Data. IEEE Trans. Instrum. Meas. 74: 1-12 (2025)
[c30]Yibo Wang, Hao Ye, Dexian Huang, Xiang Yin, Chao Shang:
An Innovation-Based Approach to Adaptive Data-Driven Predictive Control. ECC 2025: 1630-1635- 2024
[j33]Yilin Wang, Tongshuai Zhang
, Zhihua Xiong, Hao Ye
:
An estimation method for switching points of multimode spatiotemporal data based on SFSTAR. J. Frankl. Inst. 361(9): 106843 (2024)
[j32]Jianye Xue
, Kang Li
, Tongshuai Zhang
, Hao Ye
:
Data-Driven Soft Sensor for Hot Strip Mill Process Based on Multiscale Information-Fusion Attention Network. IEEE Trans. Instrum. Meas. 73: 1-11 (2024)
[j31]Kang Li
, Chao Shang
, Hao Ye
:
Reweighted Regularized Prototypical Network for Few-Shot Fault Diagnosis. IEEE Trans. Neural Networks Learn. Syst. 35(5): 6206-6217 (2024)
[c29]Yu Chen, Xuanyuan Yin, Hao Ye, Shaoyuan Li, Xiang Yin:
Optimal Control Synthesis of Markov Decision Processes for Efficiency with Surveillance Tasks. CDC 2024: 3699-3704
[i2]Wenju Zheng, Hao Ye:
A Two-stage Identification Method for Switched Linear Systems. CoRR abs/2407.02743 (2024)- 2023
[j30]Chao Shang
, Hao Ye
, Dexian Huang
, Steven X. Ding
:
From Generalized Gauss Bounds to Distributionally Robust Fault Detection With Unimodality Information. IEEE Trans. Autom. Control. 68(9): 5333-5348 (2023)
[j29]Kang Li
, Tongshuai Zhang
, Wei Dong
, Hao Ye
:
Abnormality Detection of Blast Furnace Ironmaking Process Based on an Improved Diffusion Convolutional Gated Recurrent Unit Network. IEEE Trans. Instrum. Meas. 72: 1-12 (2023)
[j28]Hao Zhou
, Yiming Wan
, Hao Ye
, Borui Li, Baoming Liu:
A Novel Real-Time Algorithm for Optimizing Train Speed Profiles Under Complex Constraints. IEEE Trans. Intell. Transp. Syst. 24(8): 7987-8002 (2023)
[c28]Wenju Zheng, Hao Ye:
Identification of Switched Linear System Based on Dynamic Programming. SAFEPROCESS 2023: 1-5
[c27]Qingyuan Liu, Zhengchao Huang, Hao Ye, Dexian Huang, Chao Shang:
Accelerated Nonconvex ADMM with Self-Adaptive Penalty for Rank-Constrained Model Identification. CDC 2023: 1281-1287
[i1]Qingyuan Liu, Zhengchao Huang, Hao Ye, Dexian Huang, Chao Shang:
Accelerated Nonconvex ADMM with Self-Adaptive Penalty for Rank-Constrained Model Identification. CoRR abs/2305.14781 (2023)- 2021
[j27]Chao Shang, Steven X. Ding, Hao Ye:
Distributionally robust fault detection design and assessment for dynamical systems. Autom. 125: 109434 (2021)
[c26]Chuan Wan, Tongshuai Zhang, Zhihua Xiong, Hao Ye:
Representation Learning for Fault Diagnosis with Contrastive Predictive Coding. CAA SAFEPROCESS 2021: 1-5
[c25]Yijie Zhao, Bin Zheng, Hao Ye, Jing Zhong, Haiwei Wang:
Comparison of Data-Based Methods for Selecting Treatment Therapy in Hepatocellular Carcinoma. CAA SAFEPROCESS 2021: 1-5- 2020
[j26]Hao Ye, Dong Wang, Jun Wu, Yi Yue, Yulin Zhou:
Forward and inverse kinematics of a 5-DOF hybrid robot for composite material machining. Robotics Comput. Integr. Manuf. 65: 101961 (2020)
[j25]Zijian Guo
, Yiming Wan
, Hao Ye
:
An Unsupervised Fault-Detection Method for Railway Turnouts. IEEE Trans. Instrum. Meas. 69(11): 8881-8901 (2020)
[c24]Zijian Guo, Hao Ye, Ming Jiang, Xinya Sun:
An enhanced fault detection method for railway turnouts incorporating prior faulty information. ITSC 2020: 1-6
2010 – 2019
- 2019
[j24]Yilin Wang, Hao Ye, Tongshuai Zhang, Haipeng Zhang:
A data mining method based on unsupervised learning and spatiotemporal analysis for sheath current monitoring. Neurocomputing 352: 54-63 (2019)
[j23]Zijian Guo, Yiming Wan, Hao Ye:
A data imputation method for multivariate time series based on generative adversarial network. Neurocomputing 360: 185-197 (2019)
[c23]Yijie Zhao, Hao Ye, Jing Zhong, Haiwei Wang:
A Decision Tree Based Method for Treatment Therapy of HCC. CAA SAFEPROCESS 2019: 879-883
[c22]Lingfeng Wang, Li Xia, Hao Ye, Ming Jiang, Jia Wang, Yijing Wang:
A Fast Optimization Method for Automatic Train Stop Control. ICCA 2019: 1405-1410- 2018
[c21]Zijian Guo, Hao Ye, Wei Dong, Xiang Yan, Yindong Ji:
A Fault Detection Method for Railway Point Machine Operations Based On Stacked Autoencoders. ICAC 2018: 1-6- 2017
[c20]Renming Pang, Hao Ye:
A new PCA similarity factor based on elliptical principal angle. ICCA 2017: 776-781
[c19]Yilin Wang, Tongshuai Zhang, Hao Ye, Ling Wang:
A correlation-based bi-partition hierarchical clustering method for mode identification of multimode processes. SMC 2017: 1645-1650- 2016
[c18]Tongshuai Zhang, Wei Wang
, Hao Ye, Dexian Huang, Haifeng Zhang, Mingliang Li:
Fault detection for ironmaking process based on stacked denoising autoencoders. ACC 2016: 3261-3267- 2015
[j22]Hao Wu, Wei Wang
, Hao Ye:
Robust state estimation for linear systems with parametric uncertainties and quantised measurements. Int. J. Syst. Sci. 46(3): 526-534 (2015)
[c17]Bo Zhou, Hao Ye:
Qualitative trend clustering of process data for fault diagnosis. CASE 2015: 1584-1588- 2014
[j21]Bo Zhou, Wei Wang
, Hao Ye:
Cooperative control for consensus of multi-agent systems with actuator faults. Comput. Electr. Eng. 40(7): 2154-2166 (2014)
[j20]Yiming Wan
, Wei Wang
, Hao Ye:
Discrete time-varying fault detection filter for non-uniformly sampled-data systems. Sci. China Inf. Sci. 57(3): 1-11 (2014)
[j19]Cong Zhang, Zhihua Xiong, Hao Ye:
Informative conditions for the data set in an MIMO networked control system with delays, packet dropout and transmission scheduling. Int. J. Syst. Sci. 45(7): 1346-1355 (2014)
[c16]Bo Zhou, Wei Wang, Hao Ye:
Distributed consensus tracking control of linear multi-agent systems with actuator faults. CCA 2014: 2141-2146- 2013
[j18]Hao Wu, Wei Wang
, Hao Ye, Zidong Wang
:
State estimation for Markovian Jump Linear Systems with bounded disturbances. Autom. 49(11): 3292-3303 (2013)
[j17]Hao Wu, Wei Wang
, Hao Ye:
Set-membership state estimation with nonlinear equality constraints and quantization. Neurocomputing 119: 359-365 (2013)
[j16]Cong Zhang, Wei Wang
, Hao Ye:
Informative conditions for a data set in an MIMO networked control system. Neurocomputing 121: 309-316 (2013)
[j15]Hao Wu, Hao Ye:
State estimation for networked systems: an extended IMM algorithm. Int. J. Syst. Sci. 44(7): 1274-1289 (2013)
[j14]Bin Li, Wei Wang
, Hao Ye:
Automatic registration of multisensor images with affine deformation based on triangle area representation. J. Electronic Imaging 22(1): 013002 (2013)
[j13]Hao Wu, Wei Wang
, Hao Ye:
Model Reduction Based Set-Membership Filtering with Linear State Equality Constraints. IEEE Trans. Aerosp. Electron. Syst. 49(2): 1391-1399 (2013)
[c15]Hao Wu, Wei Wang
, Hao Ye:
Lower bounds in parameter estimation based on quantized measurements. CDC 2013: 6341-6346
[c14]Hao Ye, Liangrui Peng:
Word level script recognition for Uighur document mixed with English script. MOCR@ICDAR 2013: 4:1-4:5- 2012
[j12]Bin Li, Hao Ye:
RSCJ: Robust Sample Consensus Judging Algorithm for Remote Sensing Image Registration. IEEE Geosci. Remote. Sens. Lett. 9(4): 574-578 (2012)
[c13]Hao Wu, Hao Ye:
State estimation for Markovian Jump Linear System using quantized measurements. CASE 2012: 527-531- 2011
[c12]Yiming Wan
, Hao Ye:
Fault detection of networked control systems utilizing limited possibilities of unknown packet transmission. CASE 2011: 619-624
[c11]Cong Zhang, Hao Ye:
The informative enough property of the data set in a Networked Control System. CDC/ECC 2011: 222-228
2000 – 2009
- 2009
[j11]Yue Cheng, Hao Ye, Yongqiang Wang, Donghua Zhou:
Unbiased minimum-variance state estimation for linear systems with unknown input. Autom. 45(2): 485-491 (2009)
[j10]Yongqiang Wang, Hao Ye, Steven X. Ding, Guizeng Wang, Donghua Zhou:
Residual generation and evaluation of networked control systems subject to random packet dropout. Autom. 45(10): 2427-2434 (2009)
[j9]Yongqiang Wang, Hao Ye, Steven X. Ding, Yue Cheng, Ping Zhang, Guizeng Wang:
Fault detection of networked control systems with limited communication. Int. J. Control 82(7): 1344-1356 (2009)- 2008
[j8]Chuanhu Ge, Guizeng Wang, Hao Ye:
Analysis of the smallest detectable leakage flow rate of negative pressure wave-based leak detection systems for liquid pipelines. Comput. Chem. Eng. 32(8): 1669-1680 (2008)
[j7]Yongqiang Wang, Steven X. Ding, Hao Ye, Guizeng Wang:
A New Fault Detection Scheme for Networked Control Systems Subject to Uncertain Time-Varying Delay. IEEE Trans. Signal Process. 56(10-2): 5258-5268 (2008)- 2007
[j6]Huajing Fang, Hao Ye, Maiying Zhong:
Fault diagnosis of networked control systems. Annu. Rev. Control. 31(1): 55-68 (2007)
[j5]Yongqiang Wang, Hao Ye, Guizeng Wang:
Fault detection of NCS based on eigendecomposition, adaptive evaluation and adaptive threshold. Int. J. Control 80(12): 1903-1911 (2007)
[j4]Maiying Zhong, Hao Ye, Steven X. Ding, Guizeng Wang:
Observer-Based Fast Rate Fault Detection for a Class of Multirate Sampled-Data Systems. IEEE Trans. Autom. Control. 52(3): 520-525 (2007)- 2006
[j3]Ping Zhang
, Hao Ye, Steven X. Ding, Guizeng Wang, Donghua Zhou:
On the relationship between parity space and H2 approaches to fault detection. Syst. Control. Lett. 55(2): 94-100 (2006)- 2005
[c10]Zhengwei Zhang, Hao Ye, Guizeng Wang, Jie Yang:
Leak Detection in Transport Pipelines Using Enhanced Independent Component Analysis and Support Vector Machines. ICNC (2) 2005: 95-100
[c9]Hongying Yang, Hao Ye, Guizeng Wang, Tongfu Hu:
Fuzzy Neural Very-Short-Term Load Forecasting Based on Chaotic Dynamics Reconstruction. ISNN (3) 2005: 622-627- 2004
[j2]Hao Ye, Guizeng Wang, Steven X. Ding:
A new parity space approach for fault detection based on stationary wavelet transform. IEEE Trans. Autom. Control. 49(2): 281-287 (2004)
[c8]Hao Ye, Steven X. Ding:
Fault detection of networked control systems with network-induced delay. ICARCV 2004: 294-297
[c7]Maiying Zhong, Hao Ye, Guizeng Wang:
Multi-freedom design of fault detection filter for linear time-delay systems. ICARCV 2004: 1630-1634
[c6]Rong Hu, Hao Ye, Guizeng Wang, Chen Lu:
Leak detection in pipelines based on PCA. ICARCV 2004: 1985-1989
[c5]Zhengwei Zhang, Hao Ye, Rong Hu:
Application of Enhanced Independent Component Analysis to Leak Detection in Transport Pipelines. ISNN (2) 2004: 561-566
[c4]Chunfu Li, Hao Ye, Guizeng Wang:
Nonlinear time series modeling and prediction using RBF network with improved clustering algorithm. SMC (4) 2004: 3513-3518- 2003
[c3]Hao Ye, Guizeng Wang, Steven X. Ding:
A new fault detection approach based on parity relation and stationary wavelet transform. ACC 2003: 2991-2996- 2002
[j1]Hao Ye, Steven X. Ding, Guizeng Wang:
Integrated design of fault detection systems in time-frequency domain. IEEE Trans. Autom. Control. 47(2): 384-390 (2002)- 2001
[c2]Hao Ye, S. X. Sing, Guizeng Wang:
Integrated design approach of fault detection systems based on wavelet transform. ACC 2001: 1771-1776- 2000
[c1]Hao Ye, Ping Zhang
, Steven X. Ding, Guizeng Wang:
A time-frequency domain fault detection approach based on parity relation and wavelet transform. CDC 2000: 4156-4161
Coauthor Index

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last updated on 2026-02-23 22:47 CET by the dblp team
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