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Approximation of PM DC Micromotor Transfer Function by Fractional Order Transfer Function

机译:PM DC Micromotor传递函数的近似通过分数阶传递函数

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Transfer function of permanent magnets (PM) DC micromotor speed is quite complex, which in turn complicates the synthesis of automatic control systems. It is established that for this class of micromotors the electromechanical time constant becomes commensurate with the electric time constant of the armature, which leads to overshooting of the output coordinate, so simplification of transfer function of speed by discarding the s2 component will result in aperiodic process and considerable accuracy loss. A series of experimental PM DC micromotor studies using a high-precision laser tachometer to obtain the necessary parameters for the high-accuracy micromotor model development have been carried out. The developed high-accuracy model made it possible to obtain the appropriate transition process of speed with overshooting. Approximation of complex transfer function of PM DC micromotor speed by a more compact fractional order transfer function using the intelligent particle swarm optimization method has been performed, and the approximation accuracy has been estimated on the basis of transition and frequency characteristics analysis.
机译:永磁体(PM)直流微电路机速度的传递函数非常复杂,这反过来使自动控制系统的合成复杂化。建立,对于该类的微电机,机电时间常数与电枢的电时常数变得相称,这导致输出坐标的过冲,从而通过丢弃S来简化速度的传递函数。 2 组件将导致非周期性过程和相当大的精度损失。采用高精度激光转速表的一系列实验PM DC微电机研究,以获得高精度微电流模型开发的必要参数。开发的高精度模型使得可以通过过冲来获得适当的速度过渡过程。已经执行了通过使用智能粒子群优化方法更紧凑的分数级传递函数的PM DC微电机速度的复杂传递函数的近似,并且基于转换和频率特性分析估计近似精度。

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