1)  Brushless motor
无刷电机动
2)  Brushless
无刷
1.
Influence of the Slots Per Pole Per Phase and Phases on the Counter Electromotive Force of Concentrated Winding Brushless DC Motor;
每极每相槽数和相数对集中绕组无刷直流电动机反电动势的影响
2.
The Principle and the Application of the Synchro-generator with Quadrature Harmonics Brushless Magnetized;
正交谐波无刷励磁同步发电机原理及应用
3.
Design of stator winding for brushless double-feed motor;
无刷双馈电机定子绕组的设计
3)  Brushless system
无刷系统
4)  BLDC
无刷直流
1.
Study on Air-Conditioner Fan’s BLDC Stepless Speed Regulating System with Two Fuzzy PI Regulator;
汽车空调风机无刷直流双模糊PI调节的无级调速系统研究
2.
The brushless DC motor (BLDCM) is set as the control target.
本文首先对无刷直流电机(BLDCM)的组成结构、运行原理进行了阐述,并讨论了无刷直流电机的相关控制策略。
5)  Brushless excitation
无刷励磁
1.
Diagnosis of fuzzy neural network for rotating rectifier faults of generators with brushless excitation;
无刷励磁同步发电机旋转整流器故障的模糊神经网络诊断
2.
Design of a synchronous motor with brushless excitation system;
同步机无刷励磁控制系统的设计方法
3.
Research about two frequencies or frequency conversion brushless synchronous generator is advanced in this thesis,the technology of two frequencies brushless excitation and frequency conversion brushless excitation is researched,analyzed and formed respectively.
提出了双频变频无刷同步发电机的研究课题,研究分析并形成了双频无刷励磁技术和变频无刷励磁技术。
6)  brushless DC motor
无刷电机
1.
Fault detection of brushless DC motor based on nolinear observer;
基于非线性状态观测器的无刷电机故障诊断
2.
Design of brushless DC motor controller based on TMS320L240x DSP;
基于TMS320L240x DSP的无刷电机控制器的设计
3.
A new type of control system of sun shelter,which is driven by brushless DC motor,is introduced in this paper.
研究了一种新型遮阳篷无刷电机驱动控制系统。
参考词条
补充资料:厂用电受电


厂用电受电
energizing of auxiliary power system

chongyongd一on sho一Jd一on厂用电受电(energizing of auxiliary powersystem)机组附属设备安装完毕后需通电试运行,所需厂用电源由外部供给,因此厂用电受电是调试工作开始的标志。 受电步骤新建电厂先由电力系统向变电站供电,再依次对高压起动/备用变压器、3~10kv厂用配电装置、厂用工作变压器及380V配电装置供电。扩建电厂因高压起动/备用变压器已经投人运行,故可利用它的电源对扩建的厂用配电装置等供电。 调试项目主要有:①用额定电压依次对空载线路、变电站母线、隔离开关、断瘩器、互感器、变压器及厂用配电装置等进行冲击合闸试验。有条件时.冲击合闸前应先进行递升加压试验。升压过程中注意检查各设备有无放电声及短路现象,发现问题及时处理后再进行升压。②检查三相电压应平衡,相序应正确,各段母线的相位彼此应一致。对配电装置供电时,有时会由于母线电容和与母线连接的电磁式电压互感器的电感相互作用而出现铁磁谐振,此时相电压升高,中性点明显位移。为消除谐振可在电压互感器的剩余电压绕组处并联电阻以去振。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。