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Design and Realization of Control System of Brushless DC Motor Based on ARM

机译:基于ARM的无刷直流电机控制系统的设计与实现。

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With the development of science and technology, people are demanding more and more sophisticated technology products, especially in some advanced and high-end research fields. For example, in terms of medical devices, home appliances, and transportation vehicles, there are higher demands on them that they can become more and more compact and sophisticated to meet people's needs better. Most of the daily products are inseparable from the motor drive, and the convenience of motor drive will bring about rapid development and improvement in these fields to make these technologies meet people's requirements. Based on the powerful simulation function of SIMULINK, the brushless DC motor control system simulation was completed. In the thesis, through the establishment of two simulation models, the theoretical analysis of the principle and mathematical model of brushless DC motor is carried out. Finally, the brushless DC motor control system is designed on the basis of simulation and theoretical analysis, and the hardware selection and circuit design are carried out. The main control chip of the control system is the LPC1766 of NXP Company, which is based on ARM's latest Contex-M3 kernel. Besides, the data transmission is realized by the Modbus bus protocol in this control system, and the software programming is carried out in the U-Vision4 development environment, of which the implementation process is presented by flowchart.
机译:随着科学技术的发展,人们对技术产品的要求越来越高,特别是在某些高端和高端研究领域。例如,在医疗设备,家用电器和运输工具方面,对它们有更高的要求,它们可以变得越来越紧凑和复杂,以更好地满足人们的需求。日常用品大部分与电机驱动器密不可分,电机驱动器的便捷性将带来这些领域的快速发展和完善,使这些技术满足人们的需求。基于SIMULINK强大的仿真功能,完成了无刷直流电机控制系统的仿真。本文通过建立两个仿真模型,对无刷直流电动机的原理和数学模型进行了理论分析。最后,在仿真和理论分析的基础上,设计了无刷直流电动机控制系统,并进行了硬件选择和电路设计。该控制系统的主控制芯片是NXP公司的LPC1766,它基于ARM最新的Contex-M3内核。此外,在该控制系统中,通过Modbus总线协议实现了数据传输,并在U-Vision4开发环境中进行了软件编程,其实现过程由流程图表示。

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