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Comparative Performance Evaluation of Hall Effect Sensorless Control Options in Permanent Magnet Brushless DC Motor Drives

机译:永磁无刷直流电机驱动器霍尔效应无传感器控制选项的比较绩效评价

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The objective of this paper is to present a comparative and quantitative study on three hall effect sensorless circuit configurations in permanent magnet (PM) brushless dc motor drives, along with four practical pulse width modulation (PWM) techniques. PM brushless direct current (BLDC) motor mathematical model, principles of operation, measurement circuit and logic configurations for three back electromotive force (EMF) zero crossing detection methods, as well as theoretical analysis on various PWM patterns are described. Their performance evaluation on waveform quality, rotor position tracking capability, and torque ripple impact are quantified as functions of motor speed and load variation. Digital time domain simulation models are established with the closed current and speed loops for the evaluation. Experimental results without using any hall effect sensors fully validate the theoretical and simulation findings.
机译:本文的目的是在永磁体(PM)无刷直流电动机驱动器中的三个霍尔效应无传感器电路配置以及四种实际脉冲宽度调制(PWM)技术的比较和定量研究。 PM无刷直流(BLDC)电机数学模型,操作原理,三个背部电动势(EMF)零交叉检测方法的操作原理,测量电路和逻辑配置,以及各种PWM图案的理论分析。 它们对波形质量,转子位置跟踪能力和扭矩脉动冲击的性能评估被量化为电机速度和负载变化的功能。 数字时域仿真模型是以闭合电流和速度回路建立的。 实验结果而不使用任何霍尔效应传感器,完全验证了理论和仿真结果。

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