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A Novel Speed Sensorless Control of Brushless DC Motor in Position Servo System

机译:伺服系统无刷直流电动机的新型无速度传感器控制

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摘要

Zero crossing points of back-electromotive force (EMF) is the most mature and widely used method of the speed sensorless control of brushless DC motor (BLDCM). However, with the poor performance from standstill to low speed, it is not suitable for the position servo system. Therefore, this paper first analyzes several conventional speed sensorless control schemes in the BLDCM, then presents a novel control algorithms for the BLDCM. In the proposed method, the short pulse sensing method for the rotor position in the start-up process and self-synchronization with zero cross points of back-EMF are combined together. As a result, the BLDCM used in the position servo system can be easily controlled from zero to high speed, the theoretical analysis is verified by the simulation results based on Matlab, it shows that the proposed algorithms can improve the performances of position servo system compared with the conventional methods.
机译:背部电动势(EMF)的过零点是无刷直流电机(BLDCM)无速度传感器控制的最成熟和广泛使用的方法。 然而,随着静止的低速的性能差,它不适用于位置伺服系统。 因此,本文首先分析了BLDCM中的几种传统速度传感器控制方案,然后为BLDCM提供了一种新的控制算法。 在所提出的方法中,在启动过程中的转子位置的短脉冲感测方法和与零交叉点的自同步组合在一起。 结果,在位置伺服系统中使用的BLDCM可以容易地从零控制到高速,通过基于MATLAB的仿真结果来验证理论分析,表明所提出的算法可以提高位置伺服系统的性能 用常规方法。

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