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Power-Train ECU programming using Rapid Prototyping through Matlab/Simulink

机译:通过Matlab / Simulink使用快速原型进行动力传动ECU编程

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This article focuses on the validation of the programming of the microcontroller S32K148, from NXP Semiconductors, through Rapid Prototyping using Matlab/Simulink. To do so, a motor control strategy (Field Oriented Control, FOC) is implemented using the Matlab’s toolbox (Model Based Design Toolbox) that allows this kind of programming. The algorithms developed by Simulink’s bocks diagrams, used to obtain the PWM signals, as well as the ones used to obtain the FOC strategy, are described in this paper. Furthermore, an optimized FOC is proposed replacing the encoder with an angle estimation by using the Hall Position Sensors integrated in the motor. Later on, the signals obtained with the control platform, are applied to a Brushless DC Motor in a prototype, and experimental tests are conducted. In addition, to improve the quality of the current demanded by the BLDC motor, a compensation strategy of the dominant harmonic is proposed. Experimental results validate this strategy.
机译:本文重点介绍通过使用Matlab / Simulink进行快速原型设计,对恩智浦半导体公司的微控制器S32K148进行编程的验证。为此,使用Matlab的工具箱(基于模型的设计工具箱)实施了一种电机控制策略(现场定向控制,FOC),该工具箱可进行此类编程。本文介绍了Simulink的框线图开发的算法,这些算法用于获取PWM信号以及用于获取FOC策略的算法。此外,提出了一种优化的FOC,它通过使用集成在电动机中的霍尔位置传感器来用角度估计代替编码器。稍后,将通过控制平台获得的信号应用于原型无刷直流电动机,并进行了实验测试。另外,为了提高BLDC电机所需电流的质量,提出了一种主谐波补偿策略。实验结果验证了该策略。

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