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基于STM32和A4988的魔方控制系统

Rubik’s Cube Control System Based on STM32 and A4988

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【作者】 李俊安赵春丽黄泽林陈昊文陈芳

【Author】 LI Jun’an;ZHAO Chunli;HUANG Zelin;CHEN Haowen;CHEN Fang;

【机构】 合肥工业大学屯溪路校区

【摘要】 文章设计了一种控制魔方转动的控制系统。以三阶魔方为主要模型,通过研究三阶魔方的内部结构,以一个控制转动的魔方轴作为定轴,剩余的五个旋转的可动的动轴来控制魔方的转动。在该控制系统中,主要利用步进电机的精准角度的转动特性来控制魔方的每一个面的旋转,从而达到魔方控制的效果。步进电机的转动主要是通过STM32单片机的内部计算,精确修改旋转角度、细分系数。步进电机的转动器的设计是以STM32F103RCT6作为主控制器,以A4988步进电机驱动设备,详细分析步进电机驱动设备的工作原理、各部分接口电路以及控制器设计方案。通过实物设计实现了步进电机正反转任意角度和细分系数的控制,并通过精确计算步进脉冲个数实现了任意旋转角度的精确控制,该驱动控制器步进角度精度高0.1125度,以至于达到了魔方的精准旋转控制。

【Abstract】 A control system is designed to control the rotation of Rubik’s Cube. Taking the three-order Rubik’s Cube as the main model, the internal structure of the three-order Cube is studied. A rotating Cube axis is used as the fixed axis, and the remaining five rotating movable axes are used to control the rotation of the Cube. In this control system, the rotation characteristics of the precise angle of the stepping motor are mainly used to control the rotation of each side of the Rubik’s Cube, so as to achieve the effect of the Rubik’s Cube control. The rotation of stepper motor is mainly through the internal calculation of STM32 single chip computer, precise modification of rotation angle, and subdivision coefficient. The design of stepping motor rotator is based on STM32 F103 RCT6 as the main controller and A4988 as the driving device. The working principle, interface circuit and controller design scheme of the stepping motor drive device are analyzed in detail. The control of the forward and backward rotation angle and subdivision coefficient of the stepping motor is realized through the physical design, and the precise control of any rotation angle is realized by calculating the number of step pulses accurately. The stepping angle precision of the driving controller is 0.1125 degrees higher so as to achieve the precise rotation control of the Rubik’s Cube.

【关键词】 STM32A4988步进电机魔方控制系统
【Key words】 STM32A4988stepping motorRubik’s Cube control system
  • 【文献出处】 科技创新与应用 ,Technology Innovation and Application , 编辑部邮箱 ,2018年20期
  • 【分类号】TP273
  • 【被引频次】5
  • 【下载频次】320
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