1) sensorless method
无位置传感技术
3) sensorless
无位置传感器
1.
The control system of sensorless brushless DC motor based on sunplus SPMC75;
基于凌阳75单片机的无位置传感器无刷直流电机控制方案
2.
Sensorless Control of Brushless DC Motor Based on Microcontroller XC164CM;
基于XC164CM的无刷直流电动机无位置传感器控制
3.
A Small Capacity Sensorless Brushless DC Control System;
一种小功率无位置传感器无刷直流电动机控制系统研究
4) position sensorless
无位置传感器
1.
A position sensorless motion control system of permanent magnet synchronous motor with direct torque control;
无位置传感器的永磁同步电机直接转矩控制系统
2.
Position Sensorless Control for Permanent Magnet Synchronous Motor Using Sliding Mode Observer;
基于滑模观测器的永磁同步电机无位置传感器控制
3.
A newly designed sliding mode observer to estimate the position and speed of a surface permanent synchronous motor(SPMSM) is presented,and a position sensorless PMSM vector control system is constructed.
将用于预测永磁同步电机转子位置和转速的滑模观测器进行了改造,并构建了无位置传感器的矢量控制系统;并在此基础上提出了一种用于补偿转子位置角预测误差的改进方法。
5) sensorless control
无位置传感器
1.
New method for sensorless control technique of PMSM;
永磁同步电机无位置传感器控制系统
2.
Research on PMSM Sensorless Control;
永磁同步电机无位置传感器控制的研究
3.
The design of sensorless control of 3_phase brushless DC motor by TMS320C2xx was summarized.
主要介绍对于基于DSP技术的无位置传感器的无刷直流电动机控制系统设计 ,重点介绍了如何采用单电阻检测相电流和转子位置估算的问题 ,同时 ,对于无刷直流电动机的启动控制也提出了解决方
6) position-sensorless
无位置传感器
1.
The position-sensorless observer and the neuro-fuzzy PI controller are designed,which are used to control the electric propulsion interior permanent-magnet synchronous motor(IPMSM).
本文设计了无位置传感器和基于模糊神经网络的P I控制器,对船舶电力推进永磁电机进行控制。
2.
An idea is developed in the paper that position-sensorless BLDC motor is used as driver of EMA , with the advantages of maintenance and reliability besides small size and light weight .
提出了一种用无位置传感器的无刷直流电动机来作为电作动器的驱动电机的思想。
3.
The problem of the large current when starting for the conventional position-sensorless BLDCM was analyzed in this paper,and a improved starting method was proposed,where the current closed loop was adopted and the problem above was solved.
分析了常规无位置传感器无刷直流电动机(BLDCM)起动过程中电流过大的问题,引入电流闭环对无位置传感器BLDCM起动方法进行了改进,解决了起动时电流较大的问题。
补充资料:无位
1.犹失位。谓在上故贵,但无人君之德,则失其位。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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