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Simulation and RTDS Hardware implementation of SHAF for current harmonics cancellation using Id-Iq control strategy with PI and fuzzy controllers

机译:使用PI和模糊控制器的I d -I q 控制策略对SHAF进行电流谐波消除的仿真和RTDS硬件实现

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The main objective of this paper is to develop PI and Fuzzy controllers to analyse the performance of instantaneous real active and reactive current (id-iq) control strategy for extracting reference currents of shunt active filters under balanced, unbalanced and balanced non-sinusoidal conditions. When the supply voltages are balanced and sinusoidal, the all control strategies are converge to the same compensation characteristics; However, the supply voltages are distorted and/or un-balanced sinusoidal, these control strategies result in different degrees of compensation in harmonics. The p-q control strategy unable to yield an adequate solution when source voltages are not ideal. Extensive simulations were carried out; simulations were performed with balance, unbalanced and non sinusoidal conditions. Simulation results validate the dynamic behaviour of fuzzy logic controller over pi controller. The 3-ph 4-wire shunt active filter (SHAF) system is also implemented on a Real Time Digital Simulator (RTDS Hardware) to further verify its effectiveness. The detailed simulation and RT DS Hardware results are included.
机译:本文的主要目的是开发PI和Fuzzy控制器,以分析瞬时有功和无功电流(i d -i q )控制策略的性能,以提取参考值平衡,不平衡和平衡非正弦条件下的并联有源滤波器的电流。当电源电压达到平衡且为正弦波时,所有控制策略都收敛于相同的补偿特性;因此,所有控制策略均收敛于相同的补偿特性。但是,电源电压会失真和/或不平衡正弦波,这些控制策略会导致不同程度的谐波补偿。当电源电压不理想时,p-q控制策略无法提供适当的解决方案。进行了广泛的模拟。在平衡,不平衡和非正弦条件下进行了模拟。仿真结果验证了基于pi控制器的模糊逻辑控制器的动态行为。在实时数字仿真器(RTDS硬件)上还实现了3相4线并联有源滤波器(SHAF)系统,以进一步验证其有效性。包括详细的仿真和RT DS硬件结果。

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