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A COMPARISON OF A FLUX OBSERVER WITH A BACK-EMF TECHNIQUE FOR SENSORLESS ROTOR POSITION ESTIMATION
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异步电机的精确控制和速度辨识是交流传动系统中重要问题。在该仿真系统中,电机转速采用易于检测的电机定子电压和电流得到转速MRAS辨识算法来估算。由于速度辨识算法中电压模型的纯积分环节会引起的误差积累和漂移问题,采用改进积分型转子磁链估算模型来解决。-The precise control and the speed identification of AC motor are the very important issues on AC drive system.In this system,
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基于滑模观测器与SPLL的PMSG无传感器控制Based on sliding mode observer and SPLL PMSG sensorless control-Based on sliding mode observer and SPLL PMSG sensorless control
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This model for Permanent magnet synchronous motor by using SVPWM
This is done using vector control technique
PMSM is made sensorless with the help of sliding modle observer-This is model for Permanent magnet synchronous motor by using SVPWM
Thi
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基于滑膜观测器永磁同步电动机无速度传感器控制模型仿真-Based on the synovial observer speed sensorless control of permanent magnet synchronous motor model simulation
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Extended Luenberger observer for speed-sensorless AC motor d
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Based on the synovial observer speed sensorless control of permanent magnet synchro
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基于MATLAB/simulink搭建的应用于永磁同步电机(PMSM)的无传感器控制,主要是基于矢量控制,采用滑模转速和转子位置观测器取代传统的位置传感器,最终实现对PMSM的控制(The sensorless control based on MATLAB/simulink for permanent magnet synchronous motor (PMSM) is mainly based on vector control. Instead of the traditional pos
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永磁同步电机的无传感控制策略,包括模型参考自适应算法、滑模观测器算法等(Sensorless control strategy of PMSM, including model reference adaptive algorithm, sliding mode observer algorithm, etc.)
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