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20篇 您的检索式:作者名="Weinong Fu"
    题名 作者 年代 出处 被引量
1Reduction of numerical errors of tlme-stepplng finite element analysis for dynamic simulation of e- lectric machines显示文摘HO S L NIU Shuanxia FU Weinong 2010IEEE Transactions on Applied Superconduc- tivity2010,20,3:1
2Reduction of computing time for steady-state solutions of magnetic field and circuit coupled problems using time-domain finite-element method 显示文摘FU Weinong HO S L ZHOU Ping 2012IEEE Transactions on Magnetics2012,48,11:1
3A flexible approach for brush-commutation machine simulation显示文摘LIN D ZHOU Ping FU Weinong 2008IEEE Transactions on Magnetics2008,44,6:1
4Application of automatic choice of step size for time stepping finite element method to in- duction motors 显示文摘HO S L FU Weinong WONG H C 1997IEEE Transactions on Magnetics1997,33,2:1
5Modeling of solid con- ductors in two-dimensional transient finite-element analysis and Its application to electric machines 显示文摘FU Weinong ZHOU Ping LIN D 2004IEEE Transactions on Magnetics2004,40,2:1
6An improved nodal method for circuit and multi-slice magnetic field coupled finite element a- nalysis 显示文摘FU Weinong HO S L LI H L 2004Electric Power Components and Systems2004,32,7:1
7A multislice coupled finite- element method with uneven slice length division for the simula- tion study of electric machines 显示文摘FU Weinong HO S L LI H L 2003IEEE Transactions on Mag- netics2003,39,3:1
8A comprehensive approach to the solution of direct-coupled multi-slice model of skewed induction motors u- sing time stepping eddy-current finite element method显示文摘HO S L FU Weinong 1997IEEE Transactions on Magnetics1997,33,3:1
9Inclusion of inter-bar currents in a network-field coupled time stepping finite element model of skewed rotor induction motors 显示文摘HO S L LI H L FU Weinong 1999IEEE Transactions on Magnet- ics1999,35,5:1
10Estimation of the eddy-current loss in the permanent magnets of electric motors using network-field coupled multi-slice time stepping finite element method显示文摘FU Weinong LIU Z J 2002IEEE Trans- actions on Magnetics2002,38,2:1
11A dynamic core loss model for soft ferromagnetic and power ferrite materials in transient finite el- ement analysis 显示文摘LIN D ZHOU Ping FU Weinong 2004IEEE Transactions on Magnetics2004,40,2:1
12Evaluation of third harmonic component effects in five-phase synchronous reluctance motor drive using time-stepping finite-element method显示文摘LongYa Xu Weinong N Fu 2002IEEE transactions of industry applications2002,38,3:1
13Relay effect of wireless power transfer using strongly coupled magnetic resonances 显示文摘Zhang Fei Hackworth S A Fu Weinong 20111EEE Transactions on Magnetics2011,47,5:1
14Relay effect of wireless power transfer using strongly coupled magnetic resonance显示文摘Fei Zhang Steven A Hackworth Weinong Fu 2011IEEE Transactions on Magnetics2011,47,5:1
15Design and analysis of a no- vel axial-flux electric machine显示文摘HO S L NIU Shuangxia FU Weinong 2011IEEE Transactions on Magnet- ics2011,47,10:1
16Message from Editors显示文摘ELECTRICAL machines are the hearts of many modern appliances and industrial systems.Their analysis and design optimization processes become more and more complex as more disciplines/domains and constraints are involved,such as electromagnetics,structural mechanics,heat transfer,and control strategies.To achieve multi-objective optimal performance of electrical machines and systems for applications of challenging specifications,such as electric vehicles and wind power generation,it is of great significance to conduct a multi-physics analysis and take a systematic design optimization approach.On the other hand,the performance and quality of batch produced electrical machines depend highly on the material diversities and manufacturing tolerances.J.G.Zhu Gang Lei Weinong Fu Wei Xu Shuhong Wang Shiyou Yang Yongjian Li Chao Bi 2018CES Transactions on Electrical Machines and Systems2018,2,2:0
17Design and Comparison of Electrically Excited Double Rotor Flux Switching Motor Drive Systems for Automotive Applications显示文摘This paper presents a cost-effective driving system for automotive applications based on a double rotor electrically excited flux switching machine(FSM).Benefiting from a double rotor topology,this FSM can realize a drum winding design and thus winding ends are effectively shorten and the copper loss is mitigated.The machine structure,operation principle and design consideration are studied and further verified by time-stepping finite element method.Moreover,three topologies of drive circuit for the proposed FSM are introduced.By using electromagnetic-circuit coupling simulation,a comparison between three different three drive systems are performed,with focus on the system cost and overall electromagnetic performance,especially the effect of current control and torque ripple.A prototype is established and tested.Relevant experimental results verify the effectiveness of the proposed new FSM drive system.Xing Zhao Shuangxia Niu Weinong Fu 2018CES Transactions on Electrical Machines and Systems2018,2,2:0
18Sub-region Alopex Optimization Method with RSM for Design of Permanent Magnet Machines显示文摘Based on an Alopex optimization algorithm and a response surface model(RSM),a hybrid sub-region methodology is presented to solve the optimal design problems of permanent magnet(PM)machines.The Alopex optimization method is processed both in subspace and in global solution space.In order to decrease the computing time,a multi quadric radial basis function(MQRBF)is embedded in the optimization.The proposed method speeds up the convergence rate while keeps the accuracy of the solution.A numerical experiment is given to validate the efficiency and effectiveness of the method.Xiaoyu Liu Weinong Fu 2018CES Transactions on Electrical Machines and Systems2018,2,2:0
19An Enhanced Axial-flux Magnetic-geared Machine with Dual-winding Design for Electric Vehicle Applications显示文摘Axial-flux magnetic-geared machine(MGM) is a promising solution for electric vehicle applications for combining the virtues of both axial-flux electric machine and magnetic gear. However, generalized MGMs are limited by the torque density issue, accordingly inapplicable to industrial applications. To solve the abovementioned issue, an improved axial-flux magnetic-geared machine with a dual-winding design is proposed. The key merit of the proposed design is to achieve enhanced torque performance and space utilization with the proposed design, which installs a set of auxiliary winding between modulation rings. With the proposed design, overload protection capability, and fault-tolerant capability can be also achieved, for the proposed machine can work with either the excitation of armature windings or auxiliary windings. The pole-pair, slot combination, and parametric design is studied and optimized by the 3d finite-element method and designed C++ optimization software. Electromagnetic analysis and performance comparison indicate that the proposed machine can achieve a torque enhancement of 68.6% compared to the comparison machine.Weinong Fu Qinying Wu Shuangxia Niu Yuanxi Chen Xinhua Guo 2023CES Transactions on Electrical Machines and Systems2023,7,3:0
20Sensorless Control on a Dual-Fed Flux Modulated Electric Motor显示文摘This paper proposes the operation principle and a new flux estimation method for sensorless control strategy for the dual-fed flux modulated electric motor(DFFM).The DFFM is designed based on the flux modulation theory,it includes two stator windings and one rotor which simplify the mechanical structure.The rotor has only modulation iron and no permanent magnets on it,so there is no cogging torque problem in this motor.With adjustment of the outer and inner stator flux rotating frequency and amplitude,different rotation speed and torque of the sandwiched rotor can be gained for the DFFM.Furthermore,an improved flux estimation based sensorless control strategy is performed on the proposed machine to fit the two winding set control situation.The startup and performance of the proposed control strategy is verified by the simulation and experiments.Xiang Luo L.Zhu Xu Cai Weinong Fu Xinye Wu 2019CES Transactions on Electrical Machines and Systems2019,3,1:0
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