Characteristic Analysis of Open-circuit Fault of Rotating Diode in Nuclear Multi-phase Angular Brushless Excitation System

被引:0
|
作者
Hao L. [1 ]
Li J. [1 ]
Li H. [2 ]
Li W. [2 ]
He P. [2 ]
Gui L. [3 ,4 ]
机构
[1] School of Electrical Engineering, Beijing Jiaotong University, Beijing
[2] Liaoning Hongyanhe Nuclear Power Co. Ltd., Dalian
[3] Department of Electrical Engineering, Tsinghua University, Beijing
[4] State Key Laboratory of Control and Simulation of Power System and Generation Equipments, Tsinghua University, Beijing
关键词
Brushless excitation; Fault characteristic; Harmonic characteristic; Multi-phase; Rotating diode;
D O I
10.7500/AEPS20181213009
中图分类号
学科分类号
摘要
Multi-phase brushless excitation system is the preferred excitation mode for large-capacity nuclear power units. Its rectifier diode is in high-speed rotating state. Diode faults frequently occur in actual operation. Accurate grasp of the characteristics of diode faults is the premise to achieve reliable and sensitive protection. Firstly, the analytical expressions of armature current of the exciter rotor are obtained by theoretical analysis when the rotating diode is in normal operation, one-tube open circuit and one-phase open circuit. Furthermore, based on the analysis of the excitation effect of armature reaction on the stator excitation winding, the harmonic characteristics of excitation current of exciter stator under three operation conditions are obtained. Finally, experiments are carried out on an eleven-phase model machine with load when diode is in normal operation, one tube is open-circuit and one phase is open-circuit. Experimental results of armature current and excitation current verify the correctness of the theoretical analysis. Experiments and theoretical analysis show that the stator excitation current of the exciter mainly contains DC component when the rotating diode is in normal operation, fundamental and harmonics components appear when one tube is open-circuit, and even harmonics components occur when one phase is open-circuit. © 2019 Automation of Electric Power Systems Press.
引用
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页码:112 / 120
页数:8
相关论文
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