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Improved parallel operation for multi-modular shunt APF using dual harmonic compensation loop

机译:使用双谐波补偿环路的多模并联APF的改进并行操作

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Multi-modular shunt APF has been proved as the most effective device to compensate distorted current from large-scale nonlinear loads in power system. In this paper, an improved parallel operation for multiple APF units using dual harmonic compensation loop is proposed based on comparative analysis and summary of the existing controlling methods and connection topologies. Considering the main factors of dynamic response, compensation precision, expansibility, automatic redundancy and capacity utilization, several improvement measures that aims at obtaining optimized filtering performance are provided. Furthermore, this paper describes two types of typical harmonic compensation loops in feedback and feedforward topology. The proposed parallel operation has the following characteristics: 1) single CT; 2)centralized control; 3)combination of power and frequency splitting control; 4)feedback loop for suppressing lower order harmonics with lower switching frequency, and feedforward loop for suppressing higher order harmonics with higher switching frequency; 5) double grid-connected points. Finally, the reasonability and effectiveness of the proposed strategy are proven by the simulated and experimental results.
机译:事实证明,多模并联APF是补偿电力系统中大型非线性负载畸变电流的最有效装置。本文在对现有控制方法和连接拓扑结构进行比较分析和总结的基础上,提出了使用双谐波补偿回路对多个APF单元进行改进的并联操作。考虑到动态响应,补偿精度,可扩展性,自动冗余和容量利用率等主要因素,提出了几种旨在获得最佳滤波性能的改进措施。此外,本文描述了反馈和前馈拓扑中的两种典型谐​​波补偿环路。所提出的并行操作具有以下特征:1)单CT; 2)集中控制; 3)功率和分频控制相结合; 4)用于抑制开关频率较低的低次谐波的反馈回路,以及用于抑制开关频率较高的高次谐波的前馈回路; 5)双并网点。最后,通过仿真和实验结果证明了所提策略的合理性和有效性。

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