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Efficient Commutation and Torque Ripples Minimization in BLDC Motor for Hoist Applications

机译:高效换向和扭矩波纹最小化BLDC电机用于提升应用

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Brushless dc motors rotor has permanent magnet which rotate around fixed armature. The current in armature is commutated to give rise to rotation. The commutation angle error reduces the efficiency and performance of the motor. The back EMF waveforms are taken based on the relationship between commutation point shift and the difference of the dc-link current. Based on these relationships the analysis is made under ideal, advanced and delayed commutations resulting in the reduction of the commutation phase shift errors. The self-compensation method of deviation in the commutation eliminates the impact caused by commutation ripple by delaying the commutation angle by 10° thereby improving the dynamic performance and control thus attaining fast convergence speed, current, voltage and torque.
机译:无刷直流电动机转子具有永磁体,围绕固定电枢旋转。电枢中的电流被换向来导致旋转。换向误差降低了电机的效率和性能。基于换向点移位与DC-LINK电流差之间的关系进行拍摄的反向EMF波形。基于这些关系,分析在理想,高级和延迟的换向下,导致减少换向相移误差。换向中的自补偿方法消除了通过将换向角度延迟10°延迟换向角度引起的影响,从而提高了动态性能和控制,从而实现了快速收敛速度,电流,电压和扭矩。

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