LCL Filter Design Based on Ripple Current Minimization Approach for Grid-Connected Inverter Application

M. F. Yaakub, M. Radzi, Maaspaliza Asri, S. Shafie, N. Azis, F. H. M. Noh
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Abstract

The fast-growing demand for renewable energy has stimulated the rapid development of semiconductor devices and power electronic converter technologies. The grid-connected inverter has turn out to be normal in any distributed generation system. LCL filter is commonly adopted to interconnect an inverter to a utility grid, owing to its parametric performance. However, the common issue regarding resonance frequency and design constraints complexity remains unsolved entirely. In this paper, a simple LCL filter design to address these issues is proposed. A ripple current minimization approach is adopted in the systematic design process to determine optimized reactive components' value and mitigate its resonance frequency. Design feasibility is simulated in the Matlab/Simulink environment and extensive experimental work was carried out to validated the results against the IEC61000-3-2 standards.
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基于纹波电流最小化方法的LCL滤波器设计在并网逆变器中的应用
对可再生能源快速增长的需求刺激了半导体器件和电力电子变换器技术的快速发展。并网逆变器在任何分布式发电系统中都是正常的。由于LCL滤波器具有良好的参数化性能,通常用于逆变器与电网的互连。然而,关于共振频率和设计约束复杂性的共同问题仍未完全解决。本文提出了一种简单的LCL滤波器设计来解决这些问题。在系统设计过程中,采用纹波电流最小化的方法来确定优化的无功元件值,并降低其谐振频率。在Matlab/Simulink环境中模拟了设计的可行性,并进行了大量的实验工作,以验证IEC61000-3-2标准的结果。
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