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无刷直流电机无位置传感器控制技术的研究(博士论文)无刷直流电动机利用电子换相代替机械换相,不但具有直流电动机的调速性能,而且体积小、效率高,在许多领域已得到了广泛应用。采用无位置传感器控制技术之后,不但克服了外置式位置传感器的诸多弊病,而且进一步拓宽了无刷直流电机的应用领域。目前,无刷直流电机无位置传感器控制已成为无刷直流电机控制技术的发展方向。 本文纵观了无刷直流电动机的兴起、发展与现状,概括了无刷直流电动机无位置传感器控制技术的现有水平及存在的问题,以研制、开发全直流变转速空调产品为依托,从
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简单的PMSG与大家贡献
PMSM is made sensorless with the help of sliding modle observer--> This is model for Permanent magnet synchronous motor by using SVPWM
-> This is done using vector control technique
-> PMSM is made sensorless with the hel
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永磁同步电动机无速度传感器矢量控制研究仿真模型-Permanent magnet synchronous motor speed sensorless vector control Simulation Model
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自己建立的基于全阶磁链的异步电机无速度传感器矢量控制系统调试源码-Established based on their full order flux induction motor speed sensorless vector debugging source control system
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建立模型参考自适应系统(MRAS)来估计转子磁链,最后通过Matlab/Simulink仿真与基于DSP的无速度传感器异步电动机矢量控制实验-Model reference adaptive system (MRAS) to estimate the rotor flux, and finally through Matlab/Simulink Simulation and DSP-based induction motor speed sensorless vector control exp
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无速度传感器矢量控制系统的若干问题研究_朝泽云-Some Issues speed sensorless vector control system
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Simple Flux Regulation for Improving State
Estimation at Very Low and Zero Speed of a
Speed Sensorless Direct Torque Control of
Induction Motor
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实现永磁同步电机的无位置控制,采用滑模算法计算转子位置角度,精度高,相应速度快。(Realize position control of permanent magnet synchronous motor, rotor position Angle is obtained by using the sliding mode algorithm, high accuracy, the corresponding speed.)
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PMSM永磁同步电机无速度传感器矢量控制仿真,模型参考自适应(Simulation of speed sensorless vector control for PMSM, model reference adaptive control)
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