基于32位ARM Cortex单片机的六步换相无刷直流电动机电能质量评价

Xin Xue, Y. Teh
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引用次数: 1

摘要

电子速度控制器(ESC)是无人机的一个重要子系统,用于控制和调节无人机电机的速度。对于低成本无人机,采用六步换相无刷直流(6S-BLDC)控制等简单控制方案。本文提出了一种基于离散傅立叶变换(DFT)的6S-BLDC控制对实测电机电流的电能质量分析方法。作为概念验证,研究了在通用32位微控制器上实现的6S-BLDC ESC。研究结果表明,6S-BLDC ESC的电能质量和电机动态性能取决于电机转速、栅极驱动调制周期,但对样机中使用的单片机电源电压和时钟频率相对不敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Quality Evaluation of Six-Step Commutation Brushless DC Motor Implemented on 32-Bit ARM Cortex Microcontroller
Electronic speed controller (ESC) is an important sub-system in drones, which is used to control and regulate the speed of its electric motor. For low-cost drones, simple control scheme such as six-step commutation brushless DC (6S-BLDC) control is used. This paper presents an analysis method to study the power quality delivered by 6S-BLDC control based on discrete Fourier transform (DFT) over the measured motor current. As proof of concept, a 6S-BLDC ESC implemented in a generic 32-bit microcontroller is studied. Findings show that the power quality and motor dynamic performance of 6S-BLDC ESC depends on motor speed, gate driver modulation period but is relatively insensitive to microcontroller supply voltage and clock frequency used in the prototype.
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