


default search action
Wei Hua 0001
Person information
- affiliation: Southeast University, Nanjing, China
Other persons with the same name
- Wei Hua — disambiguation page
- Wei Hua 0002
— Zhejiang Lab, Hangzhou, China
- Wei Hua 0003
— Sichuan University, Chengdu, China
- Wei Hua 0004
— Shanghai Maritime University, Shanghai, China
- Wei Hua 0005
— Huazhong University of Science and Technology, Wuhan, China
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2025
- [j88]Weiming Zhang
, Dezhi Xu
, Yujian Ye
, Wei Hua
, Bin Jiang
:
Event-Triggered Model-Free Adaptive Formation Constrained Control for Nonlinear Heterogeneous Multiagent Systems. IEEE Trans. Cybern. 55(6): 2806-2819 (2025) - [j87]Zheng Wu
, Wei Hua
, Chenwen Cheng
, Jinwen Du
:
Robust Sensorless Strategy for Dual Three-Phase PMSM by the Virtual EMF Under Single Open-Phase/Open-Switch Fault. IEEE Trans. Ind. Electron. 72(1): 49-59 (2025) - [j86]Xiaobao Feng
, Bo Wang
, Zheng Wang
, Wei Hua
:
Investigation and Diagnosis of Current Sensor Fault in Permanent Magnet Machine Drives. IEEE Trans. Ind. Electron. 72(2): 1261-1270 (2025) - [j85]Chenwen Cheng
, Xiao Zheng
, Yiyin Zhang
, Wei Hua
:
A Single-Switch Dual-Constant-Output Class-E Inverter With A Coupled-Inductor Design. IEEE Trans. Ind. Electron. 72(2): 1430-1439 (2025) - [j84]Rongxin Wang
, Bo Wang
, Haiwei Cai
, Ming Cheng
, Wei Hua
:
Research on the Magnetic Field Modulation Effect of PMVM from the Perspective of Armature Magnetic Field. IEEE Trans. Ind. Electron. 72(4): 3392-3402 (2025) - [j83]Wei Wang
, Peilin Han
, Weijie Tian
, Ying Zhu, Wei Hua
, Ming Cheng
:
SVPWM-Based Phase-Shifting Fault-Tolerant Control of Permanent-Magnet Motors With Single-Phase Current Sensor. IEEE Trans. Ind. Electron. 72(4): 3438-3448 (2025) - [j82]Haorui Ge
, Hao Hua
, Hang Yin
, Jinwen Du
, Wei Hua
:
Vibration Synthesis of Permanent Magnet Synchronous Machines Considering Simply Supported Constraints and Tooth Modulations. IEEE Trans. Ind. Electron. 72(5): 5166-5176 (2025) - 2024
- [j81]Yubin Wang
, Chuntong Song
, Zhiheng Zhang
, Wei Hua
:
Elastic Modulus Adjustment Method of Double-Stator HTS Field Modulated Machine Based on Entire Machine Modal Analysis. IEEE Access 12: 12808-12817 (2024) - [j80]Dezhi Xu
, Lianqing Tang, Bin Jiang
, Tinglong Pan
, Jianxing Liu
, Wei Hua
:
Cooperative Adaptive Command Filtered Backstepping Control for EVs to UPS-Microgrid via Virtual Synchronous Generator. IEEE Trans. Cybern. 54(9): 5369-5380 (2024) - [j79]Zheng Wu
, Wei Hua
, Chenwen Cheng
, Hengliang Zhang
, Mingjin Hu
:
A Square-Wave Voltage Injection Sensorless Control for Dual Three-Phase IPMs Robust to Open-Circuit Faults. IEEE Trans. Ind. Electron. 71(2): 1113-1124 (2024) - [j78]Hao Hua
, Wei Hua
:
Winding Characteristics and Magnetization State Regulations of Variable Flux Memory Machines With Segregated Distributed Windings. IEEE Trans. Ind. Electron. 71(2): 1191-1200 (2024) - [j77]Wei Wang
, Yixin Jiang, Jun Hang
, Wei Hua
, Ming Cheng
:
Simplified Phase Model Predictive Voltage Control for Half-Centralized Open-End Winding Permanent-Magnet Motor Systems. IEEE Trans. Ind. Electron. 71(2): 1212-1222 (2024) - [j76]Yinfeng Hu
, Wei Hua
, Mingjin Hu, Yuchen Wang
:
Inductance-Resistance Online Identification for Sensorless High-Speed PMSM Considering Resistive Characteristic of Invertor Nonlinearity. IEEE Trans. Ind. Electron. 71(3): 2343-2355 (2024) - [j75]Weijie Tian
, Wei Wang
, Wei Hua
, Ming Cheng
:
A General Control Method for Half-Centralized Open Winding Permanent-Magnet Motor Drive System. IEEE Trans. Ind. Electron. 71(3): 2365-2374 (2024) - [j74]Xiaoqiang Guo
, Shuanggui Zeng, Min Wu, Rui Zhong
, Wei Hua
:
A Low-Speed Position Sensorless Scheme From Standstill for Low-Cost SRM Drives Based on Triple Current Slope Difference Threshold. IEEE Trans. Ind. Electron. 71(4): 3296-3306 (2024) - [j73]Xianglin Li
, Zhen Wei
, Yujian Zhao, Xiaosong Wang, Wei Hua
:
Design and Analysis of Surface-Mounted Permanent-Magnet Field-Modulation Machine for Achieving High Power Factor. IEEE Trans. Ind. Electron. 71(5): 4375-4386 (2024) - [j72]Hang Yin
, Wei Hua
, Zhongze Wu
, Hengliang Zhang
:
Fourier-Based Vibration Model of Electrical Machines Considering Nonideal Orthogonality Between Electromagnetic Forces and Structural Modes. IEEE Trans. Ind. Electron. 71(5): 4485-4494 (2024) - [j71]Xiaoqiang Guo
, Shuanggui Zeng
, Rui Zhong
, Wei Hua
:
Online Self-Commissioning of Unsaturated Inductance Characteristics for Low-Speed Position Sensorless Control in Switched Reluctance Machines. IEEE Trans. Ind. Electron. 71(6): 5576-5585 (2024) - [j70]Zheng Wang
, Minrui Gu
, Ming Cheng
, Wei Hua
:
Modeling and Predictive Control of PMSM Considering Eddy-Current Reaction by Vector Magnetic Circuit Theory. IEEE Trans. Ind. Electron. 71(8): 8491-8502 (2024) - [j69]Hao Hua
, Zicheng Zhou, Wei Hua
:
Investigation of Dual-Effect Air-Gap Field Regulation Mechanism in Variable Flux Memory Machines. IEEE Trans. Ind. Electron. 71(8): 8571-8580 (2024) - [j68]Jiawei Zhou
, Ming Cheng
, Wei Hua
, Wenfei Yu
, Zhengzhou Ma
, Chenchen Zhao
:
Mechanism and Characteristics of Cogging Torque in Surface-Mounted PMSM: A General Airgap Field Modulation Theory Approach. IEEE Trans. Ind. Electron. 71(10): 11888-11897 (2024) - [j67]Wang He
, Jun Hang
, Shichuan Ding
, Le Sun
, Wei Hua
:
Robust Diagnosis of Partial Demagnetization Fault in PMSMs Using Radial Air-Gap Flux Density Under Complex Working Conditions. IEEE Trans. Ind. Electron. 71(10): 12001-12010 (2024) - [j66]Xiaoqiang Guo
, Shuanggui Zeng
, Rui Zhong
, Wei Hua
:
High-Precision Injection Current Sampling Scheme for Direct Drive Low-Speed Position Sensorless Control of Switched Reluctance Machine. IEEE Trans. Ind. Electron. 71(11): 13754-13765 (2024) - [j65]Zhengzhou Ma
, Ming Cheng
, Wei Qin
, Peng Han
, Zheng Wang
, Wei Hua
:
Analysis of Squirrel Cage Induction Machine Based on the Magductance Modulator. IEEE Trans. Ind. Electron. 71(12): 15457-15466 (2024) - 2023
- [j64]Wei Qin
, Ming Cheng
, Jingxia Wang, Xinkai Zhu
, Zheng Wang
, Wei Hua
:
Compatibility Analysis Among Vector Magnetic Circuit Theory, Electrical Circuit Theory, and Electromagnetic Field Theory. IEEE Access 11: 113008-113016 (2023) - [j63]Bo Wang
, Jiapeng Hu, Wei Hua
, Ming Cheng
, Guanghui Wang, Weinong Fu
:
Multiple 3-Phase PMA-SynRM With Delta Windings for Enhanced Fault Tolerance. IEEE Trans. Ind. Electron. 70(2): 1094-1104 (2023) - [j62]Hang Yin
, Hengliang Zhang
, Wei Hua
, Zheng Wu
, Chen Li
:
Quantitative Analysis of Electromagnetic Forces by Decoupling Air-Gap Field Modulation and Force Modulation in Rotor-Permanent-Magnet Machines. IEEE Trans. Ind. Electron. 70(2): 1310-1320 (2023) - [j61]Xiaobiao Wang, Huafeng Xiao
, Wei Hua
, Ming Cheng
:
A Highly Reliable Three-Level Neutral-Point-Clamped Inverter With Anti-Shoot-Through Capability. IEEE Trans. Ind. Electron. 70(4): 3899-3908 (2023) - [j60]Xianglin Li
, Kejin Lu, Yujian Zhao, Daolian Chen
, Peng Yi
, Wei Hua
:
Incorporating Harmonic-Analysis-Based Loss Minimization Into MPTC for Efficiency Improvement of FCFMPM Motor. IEEE Trans. Ind. Electron. 70(7): 6540-6550 (2023) - [j59]Mingjin Hu
, Wei Hua
, Zheng Wu
, Yinfeng Hu:
Discrete-Time Current Control of Salient Machines With a Simplified Model. IEEE Trans. Ind. Electron. 70(7): 6686-6698 (2023) - [j58]Chao Zhang, Yuchen Wang
, Hengliang Zhang
, Zheng Wu
, Jinxin Tao, Wei Hua
:
Armature Reaction on Implementation of Embedded Magnetic Encoder in Fractional-Slot Concentrated-Winding Permanent Magnet Machines. IEEE Trans. Ind. Electron. 70(7): 6699-6710 (2023) - [j57]Wentao Huang
, Xiaofeng Zhu
, Hengliang Zhang
, Wei Hua
:
Generalized Fault-Tolerant Model Predictive Control of Five-Phase PMSM Drives Under Single/Two Open-Switch Faults. IEEE Trans. Ind. Electron. 70(8): 7569-7579 (2023) - [j56]Bo Wang
, ChenCheng Zha, Yuwen Xu, Jiabin Wang
, Ming Cheng
, Wei Hua
:
Comparative Study on Fault-Tolerant Triple Three-Phase PM Machine Drive With Five Modular Windings. IEEE Trans. Ind. Electron. 70(10): 9720-9730 (2023) - [j55]Yuchen Wang
, Hengliang Zhang
, Junli Zhang
, Hang Yin
, Peixin Wang
, Chao Zhang
, Wei Hua
:
Kriging-Assisted Multiobjective Optimization of Embedded Magnetic Encoder in PM Synchronous Machines. IEEE Trans. Instrum. Meas. 72: 1-12 (2023) - [c9]Zhiheng Zhang, Wei Hua, Yubin Wang, Xianglin Li, Xinkai Zhu:
Evaluation of Torque Ripple Suppression Capability of Double-Stator Electrical-Excitation Machines with Shape Optimization in Different Components. IECON 2023: 1-6 - 2022
- [j54]Xin Jiang, Guishu Zhao
, Wei Hua
, Shuye Ding
, Zhe Chang, Yao Dai:
A Novel Multi-Excitation-Tooth Nonoverlapping Stator Wound Field Synchronous Machine With Salient Rotor. IEEE Access 10: 69125-69134 (2022) - [j53]Hao Hua
, Wei Hua
:
Analytical Prediction of Torque of Switched Reluctance Machines Considering Nonlinear Characteristics. IEEE Trans. Ind. Electron. 69(1): 190-201 (2022) - [j52]Yuchen Wang
, Xuguang Bao, Wei Hua
, Kai Liu
, Peixin Wang
, Mingjin Hu
, Hengliang Zhang
:
Implementation of Embedded Magnetic Encoder for Rotor Position Detection Based on Arbitrary Phase-Shift Phase-Lock Loop. IEEE Trans. Ind. Electron. 69(2): 2033-2043 (2022) - [j51]Wentao Zhang, Wei Hua
, Zhongze Wu
, Guishu Zhao
, Yi Wang, Weiguo Xia
:
Analysis of DC Winding Induced Voltage in Wound-Field Flux-Switching Machine With Air-Gap Field Modulation Principle. IEEE Trans. Ind. Electron. 69(3): 2300-2311 (2022) - [j50]Peixin Wang
, Wei Hua
, Gan Zhang
, Bo Wang
, Ming Cheng
:
Principle of Flux-Switching Permanent Magnet Machine by Magnetic Field Modulation Theory Part I: Back-Electromotive-Force Generation. IEEE Trans. Ind. Electron. 69(3): 2370-2379 (2022) - [j49]Wei Wang
, Xinlu Zeng, Wei Hua
, Zheng Wang
, Ming Cheng
:
Phase-Shifting Fault-Tolerant Control of Permanent-Magnet Linear Motors With Single-Phase Current Sensor. IEEE Trans. Ind. Electron. 69(3): 2414-2425 (2022) - [j48]Peixin Wang
, Wei Hua
, Gan Zhang
, Bo Wang
, Ming Cheng
:
Principle of Flux-Switching PM Machine by Magnetic Field Modulation Theory Part II: Electromagnetic Torque Generation. IEEE Trans. Ind. Electron. 69(3): 2437-2446 (2022) - [j47]Hang Yin
, Hengliang Zhang
, Wei Hua
, Peng Su:
Improved Open-Circuit Airgap Field Model for FSCW-STPM Machines Considering PM-MMF Fluctuation. IEEE Trans. Ind. Electron. 69(6): 5547-5556 (2022) - [j46]Shuai Xu
, Zhenyao Sun
, Chunxing Yao
, Han Zhang, Wei Hua
, Guangtong Ma
:
Model Predictive Control With Constant Switching Frequency for Three-Level T-Type Inverter-Fed PMSM Drives. IEEE Trans. Ind. Electron. 69(9): 8839-8850 (2022) - [j45]Huafeng Xiao
, Ruibin Wang
, Linwei Zhou, Yun Liu, Wei Hua
, Ming Cheng
:
Resonance Network Structuring Method for Zero-Voltage-Transition Transformerless Inverters. IEEE Trans. Ind. Electron. 69(9): 8905-8914 (2022) - [j44]Yuchen Wang
, Wei Hua
, Chao Zhang, Zheng Wu
, Hengliang Zhang
:
Concept and Implementation of Embedded Magnetic Encoder in Flux-Switching Permanent-Magnet Machines. IEEE Trans. Ind. Electron. 69(11): 11796-11806 (2022) - [j43]Kailiang Yu
, Zheng Wang
, Wei Hua
, Ming Cheng
:
Robust Cascaded Deadbeat Predictive Control for Dual Three-Phase Variable-Flux PMSM Considering Intrinsic Delay in Speed Loop. IEEE Trans. Ind. Electron. 69(12): 12107-12118 (2022) - [j42]Wei Wang
, Yixin Jiang, Le Sun
, Zheng Wang
, Wei Hua
, Ming Cheng
:
Phase Model Predictive Voltage Control for Half-Centralized Open-End Winding Permanent-Magnet Linear Motor Traction Systems. IEEE Trans. Ind. Electron. 69(12): 12201-12212 (2022) - [j41]Peixin Wang
, Wei Hua
, Gan Zhang
, Bo Wang
, Ming Cheng
:
Inductance Characteristics of Flux-Switching Permanent Magnet Machine Based on General Air-Gap Filed Modulation Theory. IEEE Trans. Ind. Electron. 69(12): 12270-12280 (2022) - [j40]Peixin Wang
, Wei Hua
, Gan Zhang
, Bo Wang
, Ming Cheng
:
Torque Ripple Suppression of Flux-Switching Permanent Magnet Machine Based on General Air-Gap Field Modulation Theory. IEEE Trans. Ind. Electron. 69(12): 12379-12389 (2022) - [j39]Wenfei Yu
, Wei Hua
, Zhiheng Zhang:
Cooling Analysis of High-Speed Stator-Permanent Magnet Flux-Switching Machines for Fuel-Cell Electric Vehicle Compressor. IEEE Trans. Veh. Technol. 71(1): 210-219 (2022) - [j38]Yixin Jiang
, Wei Wang
, Zheng Wang
, Wei Hua
, Ming Cheng
:
Four-Vector Phase Model Predictive Voltage Control for Half-Centralized Open-End Winding Permanent-Magnet Linear Motor Systems. IEEE Trans. Veh. Technol. 71(9): 9338-9349 (2022) - 2021
- [j37]Minghao Tong
, Ming Cheng
, Sasa Wang, Wei Hua
:
An On-Board Two-Stage Integrated Fast Battery Charger for EVs Based on a Five-Phase Hybrid-Excitation Flux-Switching Machine. IEEE Trans. Ind. Electron. 68(2): 1780-1790 (2021) - [j36]Hengliang Zhang
, Paolo Giangrande
, Giacomo Sala
, Zeyuan Xu
, Wei Hua
, Vincenzo Madonna
, David Gerada
, Chris Gerada
:
Thermal Model Approach to Multisector Three-Phase Electrical Machines. IEEE Trans. Ind. Electron. 68(4): 2919-2930 (2021) - [j35]Mingjin Hu
, Wei Hua
, Guang-Tong Ma
, Shuai Xu
, Weitong Zeng
:
Improved Current Dynamics of Proportional-Integral-Resonant Controller for a Dual Three-Phase FSPM Machine. IEEE Trans. Ind. Electron. 68(12): 11719-11730 (2021) - 2020
- [j34]Wei Wang
, Zhixiang Lu, Wei Hua
, Zheng Wang
, Ming Cheng
:
A Hybrid Dual-Mode Control for Permanent-Magnet Synchronous Motor Drives. IEEE Access 8: 105864-105873 (2020) - [j33]Bo Wang
, Jiapeng Hu
, Guanghui Wang, Wei Hua
:
A Novel Stator Turn Fault Detection Technique by Using Equivalent High Frequency Impedance. IEEE Access 8: 130540-130550 (2020) - [j32]Peng Su
, Wei Hua
, Mingjin Hu
, Zhongze Wu
, Jikai Si, Zhe Chen
, Ming Cheng
:
Analysis of Stator Slots and Rotor Pole Pairs Combinations of Rotor-Permanent Magnet Flux-Switching Machines. IEEE Trans. Ind. Electron. 67(2): 906-918 (2020) - [j31]Peng Su
, Wei Hua
, Mingjin Hu
, Zhe Chen
, Ming Cheng
, Wei Wang
:
Analysis of PM Eddy Current Loss in Rotor-PM and Stator-PM Flux-switching Machines by Air-gap Field Modulation Theory. IEEE Trans. Ind. Electron. 67(3): 1824-1835 (2020) - [j30]Mingjin Hu
, Wei Hua
, Wentao Huang
, Jianjian Meng:
Digital Current Control of an Asymmetrical Dual Three-Phase Flux-Switching Permanent Magnet Machine. IEEE Trans. Ind. Electron. 67(6): 4281-4291 (2020) - [j29]Xiaoyong Zhu
, Min Jiang, Zixuan Xiang
, Li Quan, Wei Hua
, Ming Cheng
:
Design and Optimization of a Flux-Modulated Permanent Magnet Motor Based on an Airgap-Harmonic-Orientated Design Methodology. IEEE Trans. Ind. Electron. 67(7): 5337-5348 (2020) - [j28]Wentao Huang
, Wei Hua
, Fuyang Chen, Jianguo Zhu
:
Enhanced Model Predictive Torque Control of Fault-Tolerant Five-Phase Permanent Magnet Synchronous Motor With Harmonic Restraint and Voltage Preselection. IEEE Trans. Ind. Electron. 67(8): 6259-6269 (2020) - [j27]Wei Hua
, Fuyang Chen, Wentao Huang
, Gan Zhang
, Wei Wang
, Weiguo Xia
:
Multivector-Based Model Predictive Control With Geometric Solution of a Five-Phase Flux-Switching Permanent Magnet Motor. IEEE Trans. Ind. Electron. 67(12): 10035-10045 (2020) - [j26]Minghao Tong
, Ming Cheng
, Wei Hua
, Shichuan Ding:
A Single-Phase On-Board Two-Stage Integrated Battery Charger for EVs Based on a Five-Phase Hybrid-Excitation Flux-Switching Machine. IEEE Trans. Veh. Technol. 69(4): 3793-3804 (2020) - [j25]Li Liu
, NingYi Dai
, Keng-Weng Lao, Wei Hua
:
A Co-Phase Traction Power Supply System Based on Asymmetric Three-Leg Hybrid Power Quality Conditioner. IEEE Trans. Veh. Technol. 69(12): 14645-14656 (2020) - [c8]Yusheng Hu, Jingxia Wang, Biao Li, Bin Chen, Ming Cheng, Ying Fan, Wei Hua, Qingsong Wang:
Bidirectional Coupling Calculation of Electromagnetic Field and Thermal Field for FSPM Machine. ICIT 2020: 139-144
2010 – 2019
- 2019
- [j24]Kai Liu, Zhiqiang Zhou, Wei Hua
:
A Novel Region-Refinement Pulse Width Modulation Method for Torque Ripple Reduction of Brushless DC Motors. IEEE Access 7: 5333-5342 (2019) - [j23]Kai Liu, Chuang Hou, Wei Hua
:
A Novel Inertia Identification Method and Its Application in PI Controllers of PMSM Drives. IEEE Access 7: 13445-13454 (2019) - [j22]Xinhua Guo, Qiuxue Wang
, Rongyan Shang, Fenyu Chen, Weinong Fu, Wei Hua
:
Design and Analysis of a Novel Synthetic Slot Dual-PM Machine. IEEE Access 7: 29916-29923 (2019) - [j21]Bo Wang
, Jiapeng Hu, Wei Hua
:
Design Process of a Triple Redundant Fault Tolerant PMA SynRM. IEEE Access 7: 76241-76249 (2019) - [j20]Xiaofeng Zhu
, Wei Hua
, Wei Wang
, Wentao Huang
:
Analysis of Back-EMF in Flux-Reversal Permanent Magnet Machines by Air Gap Field Modulation Theory. IEEE Trans. Ind. Electron. 66(5): 3344-3355 (2019) - [j19]Wentao Huang
, Wei Hua
, Fangbo Yin, Feng Yu, Ji Qi
:
Model Predictive Thrust Force Control of a Linear Flux-Switching Permanent Magnet Machine With Voltage Vectors Selection and Synthesis. IEEE Trans. Ind. Electron. 66(6): 4956-4967 (2019) - [j18]Peng Su
, Wei Hua
, Zhongze Wu
, Zhe Chen
, Gan Zhang
, Ming Cheng
:
Comprehensive Comparison of Rotor Permanent Magnet and Stator Permanent Magnet Flux-Switching Machines. IEEE Trans. Ind. Electron. 66(8): 5862-5871 (2019) - [j17]Xiaofeng Zhu
, Wei Hua
:
Stator-Slot/Rotor-Pole Pair Combinations of Flux-Reversal Permanent Magnet Machine. IEEE Trans. Ind. Electron. 66(9): 6799-6810 (2019) - 2018
- [j16]Peng Su, Wei Hua
, Zhongze Wu
, Peng Han
, Ming Cheng
:
Analysis of the Operation Principle for Rotor-Permanent-Magnet Flux-Switching Machines. IEEE Trans. Ind. Electron. 65(2): 1062-1073 (2018) - [j15]Xiaofeng Zhu, Wei Hua
, Zhongze Wu
, Wentao Huang, Hengliang Zhang
, Ming Cheng
:
Analytical Approach for Cogging Torque Reduction in Flux-Switching Permanent Magnet Machines Based on Magnetomotive Force-Permeance Model. IEEE Trans. Ind. Electron. 65(3): 1965-1979 (2018) - [j14]Hengliang Zhang
, Wei Hua
, Zhongze Wu
:
Modular Spoke-Type Permanent-Magnet Machine for In-Wheel Traction Applications. IEEE Trans. Ind. Electron. 65(10): 7648-7659 (2018) - [j13]Gan Zhang
, Wei Hua
, Peng Han
:
Quantitative Evaluation of the Topologies and Electromagnetic Performances of Dual-Three-Phase Flux-Switching Machines. IEEE Trans. Ind. Electron. 65(11): 9157-9167 (2018) - 2017
- [j12]Wei Hua
, Hengliang Zhang
, Ming Cheng, Jianjian Meng, Chuang Hou:
An Outer-Rotor Flux-Switching Permanent-Magnet-Machine With Wedge-Shaped Magnets for In-Wheel Light Traction. IEEE Trans. Ind. Electron. 64(1): 69-80 (2017) - [j11]Ming Cheng, Peng Han
, Wei Hua:
General Airgap Field Modulation Theory for Electrical Machines. IEEE Trans. Ind. Electron. 64(8): 6063-6074 (2017) - [c7]Wei Wang, Yanan Feng, Wei Hua, Ming Cheng, Jun Hang:
Non-symmetrical permanent-magnet linear motor traction systems for subway applications. IECON 2017: 3676-3681 - 2016
- [j10]Gan Zhang, Wei Hua, Ming Cheng, Jinguo Liao:
Design and Comparison of Two Six-Phase Hybrid-Excited Flux-Switching Machines for EV/HEV Applications. IEEE Trans. Ind. Electron. 63(1): 481-493 (2016) - [j9]Lingyun Shao, Wei Hua, Ningyi Dai, Minghao Tong, Ming Cheng:
Mathematical Modeling of a 12-Phase Flux-Switching Permanent-Magnet Machine for Wind Power Generation. IEEE Trans. Ind. Electron. 63(1): 504-516 (2016) - [j8]Wei Hua, Hao Hua, Ningyi Dai, Guishu Zhao, Ming Cheng:
Comparative Study of Switched Reluctance Machines With Half-and Full-Teeth-Wound Windings. IEEE Trans. Ind. Electron. 63(3): 1414-1424 (2016) - [j7]Ming Cheng, Feng Yu, K. T. Chau
, Wei Hua:
Dynamic Performance Evaluation of a Nine-Phase Flux-Switching Permanent-Magnet Motor Drive With Model Predictive Control. IEEE Trans. Ind. Electron. 63(7): 4539-4549 (2016) - [c6]Hengliang Zhang
, Wei Hua:
A novel outer-rotor-permanent magnet flux-switching machine for in-wheel light traction. IECON 2016: 6633-6638 - 2015
- [j6]Wei Hua, Gan Zhang, Ming Cheng:
Flux-Regulation Theories and Principles of Hybrid-Excited Flux-Switching Machines. IEEE Trans. Ind. Electron. 62(9): 5359-5369 (2015) - 2014
- [j5]Ruiwu Cao, Ming Cheng, Chunting Chris Mi
, Wei Hua:
Influence of Leading Design Parameters on the Force Performance of a Complementary and Modular Linear Flux-Switching Permanent-Magnet Motor. IEEE Trans. Ind. Electron. 61(5): 2165-2175 (2014) - 2013
- [j4]Ruiwu Cao, Ming Cheng, Wei Hua:
Investigation and General Design Principle of a New Series of Complementary and Modular Linear FSPM Motors. IEEE Trans. Ind. Electron. 60(12): 5436-5446 (2013) - [c5]Rui Zhong, Yan-Ping Cao, Wei Hua, Yu-Zhe Xu, Shen Xu:
An improved model of switched reluctance motors based on least square support vector machine. ISIE 2013: 1-6 - [c4]Rui Zhong, Yi-Qian Xu, Wei Hua, Yu-Zhe Xu, Qing-Song Qian:
An improved nonlinear model of switched reluctance motor with losses. ISIE 2013: 1-6 - 2012
- [c3]Yilian Zhang, Wei Hua, Ming Cheng, Gan Zhang, Xiaofan Fu:
Static characteristic of a novel stator surface-mounted permanent magnet machine for brushless DC drives. IECON 2012: 4139-4144 - 2011
- [j3]Wenxiang Zhao
, Ming Cheng, Wei Hua, Hongyun Jia, Ruiwu Cao:
Back-EMF Harmonic Analysis and Fault-Tolerant Control of Flux-Switching Permanent-Magnet Machine With Redundancy. IEEE Trans. Ind. Electron. 58(5): 1926-1935 (2011) - [j2]Ming Cheng, Wei Hua, Jianzhong Zhang, Wenxiang Zhao
:
Overview of Stator-Permanent Magnet Brushless Machines. IEEE Trans. Ind. Electron. 58(11): 5087-5101 (2011)
2000 – 2009
- 2008
- [j1]Wenxiang Zhao
, Ming Cheng, Xiaoyong Zhu, Wei Hua, Xiangxin Kong:
Analysis of Fault-Tolerant Performance of a Doubly Salient Permanent-Magnet Motor Drive Using Transient Cosimulation Method. IEEE Trans. Ind. Electron. 55(4): 1739-1748 (2008) - [c2]Wei Hua, Ming Cheng, Hongyun Jia, Xiaofan Fu:
Comparative Study of Flux-Switching and Doubly-Salient PM Machines Particularly on Torque Capability. IAS 2008: 1-8 - [c1]Hongyun Jia, Ming Cheng, Wei Hua, Wei Lu, Xiaofan Fu:
Investigation and Implementation of Control Strategies for Flux-Switching Permanent Magnet Motor Drives. IAS 2008: 1-6
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 2025-06-12 23:38 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint