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A New Control Approach for Shunt Hybrid Active Power Filter to Compensate Harmonics and Dynamic Reactive Power with Grid Interconnection

机译:分流混合有源电力滤波器通过电网互联补偿谐波和动态无功功率的新控制方法

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摘要

The grid interconnection of renewable energy source is a popular issue in the electric utilities. Different types of converter topology in grid interconnection have been improved by researchers to improve power quality and efficiency of the electrical system. The main contribution of this paper is that shunt hybrid active power filter (SHAPF) with a DC-DC converter at dc link is to provide interconnection between renewable source and grid with linear dynamic loads. The other contribution of this paper is to present a novel control strategy for reactive power compensation and harmonics elimination in industrial networks using a hybrid active power filter as a combination of a three phase, two level voltage source converter connected in parallel with single tuned LC passive filter. In proposed control method, reactive power compensation is achieved successfully with perceptible amount. Besides, the performance results of harmonic compensation are satisfactory. Theoretical analyses and simulation results are obtained from an actual industrial network model in PSCAD. The simulation results are presented for proposed system in order to demonstrate that the harmonic compensation performance meets the IEEE-519 standard.
机译:可再生能源的电网互连是电力公司中的一个普遍问题。研究人员已经改进了电网互连中不同类型的转换器拓扑,以提高电力系统的电能质量和效率。本文的主要贡献在于,在直流链路上具有DC-DC转换器的并联混合有源电力滤波器(SHAPF)旨在为可再生能源和具有线性动态负载的电网提供互连。本文的另一个贡献是,提出了一种新颖的控制策略,用于工业网络中的无功功率补偿和谐波消除,该策略使用混合有源电力滤波器,将三相,两电平电压源转换器与单调谐LC无源并联连接在一起过滤。在提出的控制方法中,成功地实现了可感知的无功补偿。此外,谐波补偿的性能结果令人满意。从PSCAD中的实际工业网络模型获得理论分析和仿真结果。针对拟议系统提供了仿真结果,以证明谐波补偿性能符合IEEE-519标准。

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