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FOC with Resolver Implementation for PMSM Drives by Using a Low Cost Atmel SAM3X8E Microcontroller

机译:通过使用低成本Atmel SAM3X8E微控制器实现PMSM驱动器的带有解析器的FOC

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The aim of this paper is the low-cost experimental implementation of a field oriented control strategy for a Permanent Magnet Synchronous Motor (PMSM) by using an Atmel SAM3X8E microcontroller, mounted on an Arduino DUE board. In this electrical drive for PMSM, a resolver is used in order to measure the rotor position and speed: therefore, the low-cost Arduino DUE performs not only FOC algorithm and phase currents data acquisition, but also a resolver-to-digital converter process, rotor position and speed data acquisition, and resolver signals management. The code has been implemented in the open source Arduino IDE, using C language, whereas the control and plot visualization interfaces have been developed by using an open source software. In order to make currents and resolver conditioning signals, a double-layer printed circuit board (PCB) has been created. The electrical drive has been experimentally tested and the main results reported in this work show high performance in terms of rotor speed response and compilation and execution speed of the code, validating the use of Arduino DUE for PMSM drives.
机译:本文的目的是通过使用安装在Arduino DUE板上的Atmel SAM3X8E微控制器对永磁同步电动机(PMSM)进行磁场定向控制策略的低成本实验实现。在此用于PMSM的电气驱动器中,使用解析器来测量转子的位置和速度:因此,低成本的Arduino DUE不仅执行FOC算法和相电流数据采集,而且还执行解析器到数字转换器的过程,转子位置和速度数据采集以及旋转变压器信号管理。该代码已使用C语言在开源Arduino IDE中实现,而控制和绘图可视化界面已通过使用开源软件开发。为了产生电流和旋转变压器调节信号,已创建了双层印刷电路板(PCB)。电气驱动器已经过实验测试,这项工作报告的主要结果显示出在转子速度响应以及代码的编译和执行速度方面的高性能,从而验证了将Arduino DUE用于PMSM驱动器。

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