Fault-tolerant converter and fault-tolerant methods for switched reluctance generators

被引:0
作者
Guoqiang Han
Wanli Liu
Zhe Lu
Menglin Wu
Hang Lin
机构
[1] China University of Mining and Technology,
来源
Journal of Power Electronics | 2022年 / 22卷
关键词
Switched reluctance generator; Current measurement; Fault diagnosis; Fault-tolerant;
D O I
暂无
中图分类号
学科分类号
摘要
Aiming at improving the fault-tolerant performance of switched reluctance generators, a new power converter with fault-tolerance capability is proposed in this paper. The structure of the converter is simple and there is only one transistor in each of the working modes, which makes fault diagnosis easier. To obtain more fault information, an improved current measurement method is proposed. The phase current is obtained by solving current equations obtained by current sensors and rotor positions. Open-circuit and short-circuit faults can be determined by comparing the consistency of the current slope and gate signal. Fault locations can be determined by comparing the relationships among the magnitude of the bus current, the phase current, and the corresponding thresholds. Open-circuit transistors can be replaced by fault-tolerant strategy, which returns the power converter to normal and maintains the stable operation of the system. Simulations and experiments show that the open-circuit and short-circuit faults of transistors can be diagnosed by the proposed strategy.
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页码:1723 / 1734
页数:11
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共 85 条
[1]  
Chung G-B(2009)Application of fuzzy PI control algorithm as stator power controller of double-fed induction machine in wind power generation systems J. Power Electron. 9 109-116
[2]  
Choi J(2022)A novel smooth switching control strategy for multiple photovoltaic converters in DC microgrids J. Power Electron. 22 163-175
[3]  
Zhang QJ(2016)Central-tapped node linked modular fault-tolerance topology for SRM applications IEEE Trans. Power Electron. 31 1541-1554
[4]  
Hu WB(2017)Phase current reconstruction strategy for switched reluctance machines with fault-tolerant capability IET Electr. Power Appl. 11 399-411
[5]  
Liu YC(2022)Direct torque control with variable flux for an srm based on hybrid optimization algorithm IEEE Trans. Power Electron. 37 6688-6697
[6]  
Zhang HW(2014)Position signal faults diagnosis and control for switched reluctance motor IEEE Trans. Magn. 50 1-11
[7]  
Wang HL(2021)Simple current sensor fault-tolerant control strategy for switched reluctance motors in high-reliability applications IET Electron. Power Appl. 15 963-977
[8]  
Hu YH(2017)An approach for switched reluctance generator in a wind generation system with a wide range of operation speed IEEE Trans. Power Electron. 32 8277-8292
[9]  
Gan C(2017)Maximum power point tracking in grid connected wind plant by using intelligent controller and switched reluctance generator IEEE Trans. Sustain. Energy 8 1313-1320
[10]  
Cao WP(2017)Double-loop control strategy for SRGs IET Electr. Power Appl. 11 29-40