Brushless Motor
- 网络无刷电机;无刷马达;无电刷电动机
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Simulation Study of Timing System for DC Brushless Motor Based Expert System PID
基于专家系统PID的直流无刷电动机调速系统仿真研究
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Study and Realization of Model Reference Adaptive Control for Brushless Motor Based on Matlab
基于Matlab无刷电动机模型参考自适应控制的研究与实现
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Application of PWM Control Technology in Speed Control System of DC Brushless Motor
PWM控制技术在直流无刷电机调速系统中的应用
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Magnetic Field Regulating Principle and Control Method of Hybrid Excitation Brushless Motor
混合励磁无刷电机的调磁原理与实现方法
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The design of brushless motor controller node based CAN
基于CAN的车用无刷电机控制节点设计
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Application of Switched Capacitor Converter in DC Brushless Motor Driver Circuit
开关电容变换器在直流无刷电机驱动电路中的应用
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Test to Electric Appliance Components in Marine AC Brushless Motor
船用交流无刷发电机电气组件的检测
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An AC Servo System of Permanent Magnetic Brushless Motor
永磁无刷电机交流伺服系统
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The Drive and Control of DC Brushless Motor in Loom
直流无刷电机在织机送经中的驱动控制
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Mathematical Model and Simulation of Inverter-Permanent Magnet Brushless Motor System
逆变器-永磁无刷电动机系统数学模型与仿真
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Finite element analysis of straight and skewed slot permanent magnet brushless motor
直槽与斜槽式永磁无刷电动机的有限元分析
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In this paper , a DC brushless motor servo-control system based on DSP is designed .
本文设计了一种基于DSP的直流无刷电动机伺服控制系统。
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Research on a Two-Way Hybrid Excitation Brushless Motor
两向混合励磁无刷电机研究
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This paper deals with an AC servo system with permanent magnetic brushless motor driven by square wave current .
研究了方波电流驱动的永磁无刷电机交流伺服系统。
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The design principle and realization method of the digital PID control system are discussed according to the characteristic of DC brushless motor .
根据无刷直流电动机的特性,讨论了数字PID控制系统的设计原理和实现方法。
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Brushless motor control system design based on C8051 was introduced , speed and current double close loop control was realized .
论述了基于C8051的直流无刷电机控制系统设计,实现了速度、电流的双闭环控制。
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Semi-Analytical Method Research for Non-Load Air Gap Field of Surface Alnico Permanent Magnet Brushless Motor
表面磁钢永磁无刷电机空载气隙磁场半解析法研究
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Three phase double-side linear brushless motor is chosen for the great force characteristic , high efficiency , simple structure and control characteristic .
该机型较之多相无刷直流机推力特性好,结构简洁,控制相对简单,效率高。
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Influence of Rare-earth PM Brushless Motor Rotor Magnet Size and Airgap on the Output Torque and Efficiency
稀土永磁无刷电机转子磁钢尺寸及气隙对输出转矩和效率的影响
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Equip with the DC brushless motor , for the maximum5000RPM present the outstanding efficiency .
采用直流无刷电机速度最高可达5000RPM效率应用出众。
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There are several choices of brushless motor in the market , such as the Hacker and Astro .
有几个选择无刷电机在市场上,如黑客和Astro。
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At this time , it is necessary to establish an monitoring system to monitor the brushless motor , so as not to cause huge economic losses .
这时迫切需要建立一个监控系统对无刷电机进行监控,能够及时发现电机运行中的故障,以免造成巨大的经济损失。
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DC brushless motor can not only fulfill all functions implemented by the traditional frequency converter , but also save much more energy than the traditional one does before .
采用直流无刷电动机,不仅能很好的实现传统细纱机中变频器所完成的各项功能,而且比应用变频器节省能源。
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The system with CPU drives the DC brushless motor , and the encoder indicates the motor position outputting the sine and cosine signal .
系统采用CPU驱动直流无刷电机转动,编码器输出的正余弦信号指示电机的位置。
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Torque ripple suppression was the research focus of permanent magnet brushless motor , domestic and foreign experts and scholars had proposed lots of solutions for the problem .
抑制转矩脉动是永磁无刷电机研究重点,国内外专家学者提出了诸多解决方法。
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Air-gap magnetic field of the direct-drive outer rotor surface-mount permanent magnet fractional slot brushless motor was analyzed in the analytical-numerical method .
该文用解析数值结合法分析直驱式外转子分数槽表面磁钢永磁无刷电机气隙磁场。
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In a permanent magnet brushless motor , airgap field excited by a 2-pole magnet ring with parallel magnetisation is sinusoidal .
永磁无刷电机中,平行充磁的2极磁环产生的气隙磁场是正弦分布的。
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In recent years , DC Brushless motor ( Brushless Direct Current Motor-BLDCM ) are growing quickly with the rapid development of permanent magnet materials , modern power electronics technology , computer technology and modern control theory .
近年来随着永磁材料、现代电力电子技术、计算机技术和现代控制理论的迅猛发展,无刷直流电动机(BrushlessDirectCurrentMotor-BLDCM)调速系统也逐渐成熟起来。
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For the DC brushless motor position control system , usually the adaptive genetic algorithm ( AGA ) for searching optimal parameters of fuzzy sliding mode controller ( FSMC ) was used to reach proper position control .
将适应性基因演算法搜寻最佳化的模糊滑动控制模式参数,应用于直流无刷电机系统,以期达到位置控制的目的。
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Nowadays , DC brushless motor has been widely used in the textile industry , due to its advantages such as : simple structure , high efficiency , low noise , high power density , large starting torque , long life period and so on .
无刷直流电动机由于其固有的结构简单、高效、低噪声、高功率密度、启动扭矩大、寿命长等特点,在工业领域中得到越来越广泛的应用。