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Research on the precise control method based on the new style PWM with variable pulse width

机译:基于新型脉宽变化PWM的精确控制方法研究

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It has been a very common application of the DC-motor PWM speed regulation system based on the speed and current dual-closed-loop control strategy. To improve the control accuracy of current loop in speed regulation system and to further relax the dependence of the regulation system on the performance and the speed of the microcontroller,A new accurate PWM control method with variable pulse width is proposed in this paper based on the dual-closed-loop speed regulation principle and the frequency conditions which guaranteeing the current of the armature coil is continuous. The proposed method employs a common microcontroller to generate non-uniform PWM multi-pulse whose average value is used to improve the accuracy of the armature voltage. Then the control mode can be changed from the uniform PWM one to the non-uniform PWM one under stated conditions.Finally,an experiment is carried out,in which an 8-bit microcontroller is used to generate non-uniform PWM multi-pulse to control the PWM driving FET.Experiment results show that the accuracy of the average voltage of PWM can reach to millesimal by applying the newly proposed method,which is illustrated by the experimental data and pulse waveform. Therefore,it is demonstrated that the proposed method is applicable in the practical applications.
机译:基于速度和电流双闭环控制策略的直流电动机PWM调速系统已成为非常普遍的应用。为了提高调速系统电流环的控制精度,进一步放松调节系统对微控制器性能和速度的依赖性,在此基础上,提出了一种新型的脉宽可变的精确PWM控制方法。双闭环调速原理和保证电枢线圈电流连续的频率条件。所提出的方法使用普通的微控制器来产生不均匀的PWM多脉冲,该PWM多脉冲的平均值用于提高电枢电压的精度。然后在规定的条件下将控制模式从均匀PWM模式转换为非均匀PWM模式。最后,进行了一个实验,其中使用8位微控制器生成非均匀PWM多脉冲信号,以实现实验结果表明,采用新提出的方法可以使PWM平均电压的精度达到毫秒级,并通过实验数据和脉冲波形进行了说明。因此,证明了所提出的方法在实际应用中是适用的。

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