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首页> 外文期刊>Serbian Journal of Electrical Engineering >Design and analysis of a Three Phase Transformerless Hybrid Series Active Power Filter based on sliding mode control using PQ-theory and stationary reference frames
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Design and analysis of a Three Phase Transformerless Hybrid Series Active Power Filter based on sliding mode control using PQ-theory and stationary reference frames

机译:基于PQ理论和固定参考系的基于滑模控制的三相无变压器混合系列有源电力滤波器的设计与分析

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In this work, a Three phase Transformerless Hybrid Series Active Power Filter (THSeAF) based on Sliding Mode Control (SMC) is proposed to mitigate the voltage and current distortions present in an electrical distribution systems (EDS). A Sliding Mode Controller is designed by controlling the parameters present on the load side as well as source side of the system. Three separate voltage source converters (VSC) are used. The mod1elling of the system is derived by considering a single-phase system by using state space analysis. The frequency response characteristics have been derived for the single-phase system and the stability of the system is studied. It is observed that the system has good stability margins when the SMC is applied at the source side compared to load side. Simulation results obtained in PSCAD/EMTDC v4.6 have been observed for power quality issues like voltage sags, voltage swells, voltage distortions, voltage unbalances and their concurrent occurrence. The approach of stationary reference frame was used for source side control and PQ theory is used for load side control. It is observed that the proposed controller works well in obtaining a stable and constant load voltage during these power quality issues. The difference in settling time observed is around 4 ms for the load side and source side control. The THD present in the load voltage is near about 1%. The SMC is found to be robust in obtaining a constant load voltage with low THD and an improved power factor.
机译:在这项工作中,提出了一种基于滑模控制(SMC)的三相无变压器混合串联有源电力滤波器(THSeAF),以减轻配电系统(EDS)中存在的电压和电流失真。滑模控制器是通过控制系统负载端和源端存在的参数来设计的。使用了三个单独的电压源转换器(VSC)。通过使用状态空间分析考虑单相系统,得出系统的模型。推导了单相系统的频率响应特性,并研究了系统的稳定性。可以看出,与负载端相比,将SMC应用于源端时,系统具有良好的稳定性裕度。已观察到PSCAD / EMTDC v4.6中获得的仿真结果,可解决电源质量问题,例如电压骤降,电压骤升,电压畸变,电压不平衡及其同时发生。固定参考系的方法用于源侧控制,PQ理论用于负载侧控制。可以看出,在这些电能质量问题期间,建议的控制器在获得稳定和恒定的负载电压方面效果很好。对于负载侧和源极侧控制,观察到的建立时间差异约为4 ms。负载电压中的THD约为1%。已发现SMC在获得具有低THD和改善的功率因数的恒定负载电压方面很强大。

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