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LCL filter design and robust converter side current feedback control for grid-connected Proton Exchange Membrane Fuel Cell system

机译:并网质子交换膜燃料电池系统的LCL滤波器设计和强大的转换器侧电流反馈控制

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Proton Exchange Membrane Fuel Cell (PEMFC) systems are environment-friendly systems that can be used as distributed power generation (DPG) system. As DPG units are usually utilized in weak power distribution systems, the grid inductance variations should be investigated during the control design stage of the grid-tied fuel cell systems. In recent years, LCL filter is broadly utilized to grid connection of DPG units, and the proper design of this filter is an important issue. In this paper, converter side current feedback (CSCF) method has been applied due to its innate damping feature to integrate PEMFC fuel cell system through LCL filter into weak power distribution system. The impact of delay should be considered as it limits the stability region of the resonance frequency of the CSCF control method especially, in the presence of wide variations of the grid inductance. Precise-tuned LCL filter design and consequently, the proper choice of the resonance frequency can remarkably affect the performance of the CSCF control. An adequate-tuned design procedure for LCL filter parameters has been proposed in this paper. Step-by-step tuning of the PR controller parameters has also been included to enhance the power quality. The grid-tied fuel cell system with modified-Y-Source inverter and LCL filter as an interface between inverter and grid has been simulated to analyze the quality of the injected power. Simulation results in MATLAB/Simulink environment verify the suitable performance of the proposed power conditioning system as well as its stable operation versus wide variation of weak grid inductance. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:质子交换膜燃料电池(PEMFC)系统是环境友好型系统,可用作分布式发电(DPG)系统。由于DPG单元通常用于弱配电系统中,因此应在并网燃料电池系统的控制设计阶段研究电网电感变化。近年来,LCL滤波器被广泛用于DPG单元的电网连接,并且该滤波器的正确设计是一个重要的问题。本文中,由于其固有的阻尼特性,已应用了转换器侧电流反馈(CSCF)方法,将通过LCL滤波器的PEMFC燃料电池系统集成到弱配电系统中。应该考虑延迟的影响,因为它会限制CSCF控制方法的谐振频率的稳定范围,尤其是在电网电感存在较大变化的情况下。精确调谐的LCL滤波器设计,因此,正确选择谐振频率会明显影响CSCF控制的性能。本文针对LCL滤波器参数提出了一种经过适当调整的设计程序。 PR控制器参数的逐步调整也已包括在内,以提高电源质量。以改进的Y型源逆变器和LCL滤波器作为逆变器与电网之间的接口的并网燃料电池系统进行了仿真,以分析注入功率的质量。在MATLAB / Simulink环境中的仿真结果证明了所提出的功率调节系统的合适性能,以及其在较弱的电网电感变化范围内的稳定运行。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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