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PI vs FRACTIONAL PI FOR THE CONTROL OF A SHUNT ACTIVE POWER FILTER

机译:PI与分数PI用于控制有功滤波器的控制

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摘要

Nonlinear loads connected to electric power systems lead to distortions in the source current waveform. One solution to improve power quality is the use of Shunt Active Power Filters (SAPF), which are able to correct both the harmonics and the unbalance in the load current. Two of the most commonly used control strategies for these devices are the so-called Unity Power Factor (UPF) strategy and the Voltage Synchronization (VS) strategy. In these, the reference currents are obtained by multiplying the source voltages by the equivalent conductance. In VS strategy this conductance is obtained from the tracking error between the measured dc bus voltage and a reference value. To minimize this tracking error, linear controller structures, as PI are used. In the last three decades, Fractional Order Control (FOC) has been used in many robust control problems, and has been applied recently to the control of a Power Electronic Buck Converter. In this line, we here consider the use of a fractional PI controller to obtain the reference current in a SAPF under the VS strategy. Simulation results are given comparing the PI and Fractional PI controllers in order to minimize the ISE and IAE cost functions of the tracking error. They show the improved performance obtained with the PI fractional controller.
机译:连接到电力系统的非线性负载会导致源电流波形失真。一种改善电源质量的解决方案是使用并联有源功率滤波器(SAPF),它能够校正谐波和负载电流中的不平衡。这些设备最常用的两种控制策略是所谓的统一功率因数(UPF)策略和电压同步(VS)策略。其中,参考电流是通过将源电压乘以等效电导而获得的。在VS策略中,此电导是从测得的直流母线电压与参考值之间的跟踪误差获得的。为了最小化此跟踪误差,使用了线性控制器结构(如PI)。在过去的三十年中,分数阶控制(FOC)已用于许多鲁棒的控制问题,并且最近已应用于功率电子降压转换器的控制。在这条线中,我们在这里考虑使用分数PI控制器在VS策略下获得SAPF中的参考电流。给出了PI和小数PI控制器比较的仿真结果,以最小化跟踪误差的ISE和IAE成本函数。它们显示了使用PI分数控制器获得的改进性能。

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