一种用于并网可再生能源系统的改进高阶电力滤波器

Arash Anzalchi, M. Moghaddami, A. Moghaddasi, Maneli Malek Pour, A. Sarwat
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引用次数: 4

摘要

为了减小电网谐波电流和电压的影响,并网逆变器需要定期进行谐波补偿。本文介绍了一种用于单相并网电压源逆变器(VSI)的高阶功率滤波器的新拓扑L(LCL)2。将下标添加到名称中以避免与LLCL筛选器混淆。在本设计中,逆变器侧电感被分成三部分,电网侧电感被去掉。此外,在传统的LLCL滤波器上增加了开关频率的两倍谐振分支,以衰减高频谐波。随着栅极侧电感量的增加,该滤波器的总电感小于LLCL滤波器。在700w、120V / 60hz单相并网逆变器上,通过实验硬件实现和基于Matlab/ simulink的仿真,对传统LLCL滤波器和所提出的L(LCL)2滤波器进行了对比研究和讨论。此外,还提出了一个简单的工程设计基准来发现所提出的L(LCL)2滤波器的参数。结果表明,与LLCL滤波器相比,L(LCL)2滤波器不仅具有更小的压降和电感总尺寸,而且具有更好的抑制高次电流谐波的性能。
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A modified higher order power filter for grid-connected renewable energy systems
In order to reduce the influence of the grid harmonic currents and voltages, harmonic compensation is regularly implemented for a grid-tied inverter. In this paper a new topology of higher order power filter for single-phase grid-tied voltage-source inverters (VSI), named L(LCL)2, is introduced. The subscript is added to the name to avoid confusion with LLCL filter. In the proposed design the inverter side inductance is divided into three parts, and the grid side inductor is removed. Also an additional resonant branch at the double of switching frequency is added to the traditional LLCL filter to attenuate high frequency harmonics. The total inductance of this filter is less than LLCL filter with the amount of the grid side inductor. A comparative study and discussions on the subject of the traditional LLCL filter and the proposed L(LCL)2 filter have been conducted and assessed through both experimental hardware implementation and Matlab/Simulink-based simulation on a 700 W, 120V / 60 Hz single-phase grid-tied inverter. Also, a straightforward engineering design benchmark is suggested to discover parameters of the proposed L(LCL)2 filter. It is concluded that, compared with the LLCL filter, the L(LCL)2 filter not only has less voltage drop and total inductor size, but also has better performance on reducing high order current harmonics.
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