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Optimization of P PI controller parameters for variable speed drive systems using a flower pollination algorithm

机译:利用花授粉算法优化可变速度驱动系统的P&PI控制器参数

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摘要

In this study, a novel flower pollination algorithm (FPA) has been suggested for optimal tuning of P and PI controllers included in a variable speed drive VSD system control circuit. In addition to the manual tuning of controllers’ parameters, several optimization algorithms like GA, PSO, GWO have been used for controllers optimal tuning in different studies. In this study, the errors caused by grid side current harmonic distortion in the VSD system have been used depending on SPWM technique to generate switching signals for a four-quadrant chopper circuit that acts like a filter and compensates the harmonic content in the grid current and smooth ripples in both DC-link current and voltage. The studied drive system and control circuit have been modeled using Matlab/Simulink, then it was linked with the proposed algorithm and tested under different operation conditions. A hardware laboratory model has been built and tested in order to confirm the validity of this study. Comparing the proposed algorithm with other optimization algorithms shows that the suggested algorithm outperforms other algorithms in improving the time response of the VSD system, reducing total harmonic distortion THD of grid current, and reducing ripple factor PF.
机译:在本研究中,已经提出了一种新颖的花授粉算法(FPA),用于最佳调整包括在变速驱动VSD系统控制电路中的P和PI控制器。除了控制器参数的手动调谐外,还将GA,PSO,GWO等多种优化算法用于不同研究中的控制器最佳调整。在该研究中,根据SPWM技术使用了VSD系统中的电网侧电流谐波失真引起的误差,以为四象曲面斩波电路产生用于滤波器的四象限斩波电路,并补偿网格电流中的谐波内容直流链路电流和电压的平滑涟漪。研究的驱动系统和控制电路已经使用MATLAB / Simulink建模,然后将其与所提出的算法相关联并在不同的操作条件下进行测试。已经建立和测试了硬件实验室模型,以确认本研究的有效性。将所提出的算法与其他优化算法进行比较,示出了建议的算法在提高VSD系统的时间响应方面优于其他算法,从而减少了网格电流的总谐波失真THD,减少了纹波因子PF。

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