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Dynamic interaction analysis of two-parallel active power filter

机译:两并联有源电力滤波器的动态相互作用分析

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Due to the characteristics of active power filter (APF) in fast tracking and eliminating harmonic, a large number of APFs are installed in distribution network to ensure the safe operation of distribution network. However, as a lot of APF devices access to distribution network in no plan, the dynamic interaction among the APFs needs to be treated seriously and sensitively. Aiming at the interaction problems among the APFs, the typical two-parallel-APF system is taken as the research object in this paper, using the method of equivalent output impedance two-parallel-APF system equivalent model is established considering the steady-state error of a single APF system. Not only is the intrinsic correlation of the electrical and control parameters with the two-parallel-APF system discussed, but also the influence of steady state error of one APF on the operation stability of another APF is analyzed under the background of weak grid. Then, from the point of control theory, the two-parallel-APF system interaction mechanism is illustrated. The analytical method presented in this paper is validated by detailed simulation.
机译:由于在快速跟踪和消除谐波中的有源电力滤波器(APF)的特点,在分销网络中安装了大量的APF,以确保分配网络的安全操作。然而,由于许多APF设备无法在没有计划中访问分发网络,因此需要认真和敏感地处理APF之间的动态交互。针对APFS中的交互问题,典型的双行APF系统作为研究对象,在本文中,使用等效输出阻抗的方法,考虑稳态误差,建立了两次并行-APF系统等效模型单个APF系统。不仅是电力和控制参数与讨论的两个平行APF系统的内在相关性,而且在弱网格的背景下分析了一个APF的稳态误差对另一APF的操作稳定性的影响。然后,从控制理论中,示出了两个并行APF系统交互机制。本文提出的分析方法通过详细的仿真验证。

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