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Direct Torque Control of Brushless DC Motor without Flux Linkage Observation

机译:无磁通观测的无刷直流电动机直接转矩控制

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摘要

The direct torque control method of Brushless DC motor (BLDC) is different from that of permanent magnet synchronous motor for its turn-off phase and non-sinusoidal back electromotive force. To overcome these problems, a novel direct torque control method is presented in this paper. In order to control the torque effectively and directly, the torque is calculated according to the back electromotive force and three phase current in this paper. And the calculation of back electromotive force is achieved by making use of the shape function. The principle of shape function is that the amplitude of the back electromotive force is proportional to the rotor speed. It is the function of motor speed and rotor position. By utilizing the shape function and stator current, the calculation of torque is achieved easily. According to the torque error between the given torque and actual torque, the best voltage vector is selected and the dynamic performance of BLDC motor direct torque control system is guaranteed. The analysis is verified by the simulation and experiment results.
机译:无刷直流电动机(BLDC)的直接转矩控制方法与永磁同步电动机的关断相位和非正弦反电动势有所不同。为了克服这些问题,本文提出了一种新颖的直接转矩控制方法。为了有效,直接地控制转矩,本文根据反电动势和三相电流计算出转矩。并通过使用形状函数来计算反电动势。形状函数的原理是反电动势的振幅与转子速度成正比。它是电动机速度和转子位置的函数。通过使用形状函数和定子电流,可以轻松实现转矩计算。根据给定转矩与实际转矩之间的转矩误差,选择最佳电压矢量,保证了BLDC电机直接转矩控制系统的动态性能。仿真和实验结果验证了该分析结果。

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