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作 者:蔡波冲 武玉才[1] 赵艳军 CAI Bochong;WU Yucai;ZHAO Yanjun(State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources(Dept.of Electrical Engineering,North China Electric Power University),Baoding 071003,China;Shenzhen China Nuclear Power Engineering Co.,Ltd.,Shenzhen 518038,China)
机构地区:[1]新能源电力系统国家重点实验室(华北电力大学电气工程学院),河北保定071003 [2]深圳中广核工程设计有限公司,广东深圳071003
出 处:《大电机技术》2018年第4期61-65,共5页Large Electric Machine and Hydraulic Turbine
基 金:河北省自然科学基金(E2016502031);中央高校基本科研业务费专项资金资助(2017MS106)
摘 要:旋转整流器是无刷励磁机的关键部件,同时也是无刷励磁机稳定运行时的薄弱环节。旋转二极管的开路故障是无刷励磁机的典型电气故障,给发电机励磁系统带来了安全隐患。本文根据无刷励磁机的电气结构特点,分析了旋转整流器的二极管一管开路对电枢磁场以及定子电流的影响,运用定子电流谐波法来检测无刷励磁机的旋转二极管开路故障。本文以22极39相无刷励磁机为例,通过有限元仿真验证了定子电流谐波法的检测性能。Rotary rectifier is the key component of the brushless exciter, and it is also the weak point for the stable operation of the brushless exciter. The open-circuit fault of the rotating diode is a typical electrical fault of the brushless exciter, which brings security risks to the generator excitation system. According to the electrical structure characteristics of the brushless exciter, this paper analyzes the influence of the open-circuit fault of the diode of the rotary rectifier on the armature magnetic field and stator current, which uses the stator current harmonic method to detect the open-circuit fault of the rotary diode of the brushless exciter. A brushless exciter with 22 poles and 39 phases was taken as an example to verify the performance of the stator current harmonic method by the finite element simulation.
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