Single-Current Feedback Control Strategy for Input-Parallel Output-Series LCL-Type Grid-Connected Inverter System

Pengfei Wang, Tianzhi Fang, Husheng Qian
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Abstract

The multi-module input-parallel output-series (IPOS) connected inverter system, which is composed of standard modules parallel in the input side and series in the output side, have many advantages in high voltage applications. For example, in the renewable energy power generation fed to the grid, the IPOS inverter system can reduce the transformation ratio of the transformer between the inverter and grid, thus the transformer can be smaller and lighter. In order to get the high quality of grid current, the LCL filter is adopted in the output side of standard modules. Multiple objectives such as unity power factor, damping the resonant spike of LCL filter and output voltage sharing within standard modules, need to be achieved for this LCL-type IPOS grid-connected inverter system. This paper proposes a single-current feedback scheme which only samples the inverter-side current of one module to reach these goals simultaneously. It greatly simplifies the control structure and cuts down the cost sharply. In the end, the experimental results of the prototype consisting of two modules are shown to verify the effectiveness of the proposed scheme.
输入并联输出串联lcl型并网逆变器系统的单电流反馈控制策略
多模块输入并联输出串联逆变器系统是由输入侧并联、输出侧串联的标准模块组成的,在高压应用中具有许多优点。例如,在可再生能源并网发电中,IPOS逆变系统可以降低逆变器与电网之间变压器的转换比,从而使变压器更小、更轻。为了获得高质量的电网电流,在标准模块的输出侧采用了LCL滤波器。对于这种LCL型IPOS并网逆变器系统,需要实现统一功率因数、抑制LCL滤波器的谐振尖峰以及在标准模块内共享输出电压等多个目标。本文提出了一种单电流反馈方案,该方案只对一个模块的反相侧电流进行采样,即可同时达到上述目的。它大大简化了控制结构,大大降低了成本。最后,给出了由两个模块组成的原型机的实验结果,验证了所提方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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