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FCS-MPC Current Control of Parallel Photovoltaic Grid Connected Inverter with Common AC and DC Buses

机译:具有公共AC和DC总线的并联光伏并网逆变器的FCS-MPC电流控制

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As the growth penetration of photovoltaic (PV) renewable power generation systems connected into grid increases, high power quality and good efficiency are needed. Hence, in photovoltaic grid-connected systems, parallel two-level inverters (VSIs) connected with common AC and DC buses are largely used to ensure high power quality and efficiency. Besides, such a solution rises a number of concerned issues, especially, zero sequence circulating current (ZSCC) which will distort the performance of the system. This study proposes a finite set control model predictive method for suppressing the ZSCC, and controlling currents with rapid transient response. The causes of the zero-sequence circulating current are presented in detail. The proposed current controller is realized by minimizing the cost function and pick the optimal vector to generate the control requirement. Finally, Simulation results show that the proposed control scheme achieves to ensure power quality, suppression of circulating currents, and also maintains the DC-link voltage constant.
机译:随着连接到电网的光伏(PV)可再生能源发电系统的增长渗透,需要高电能质量和良好的效率。因此,在光伏并网系统中,与公共AC和DC总线连接的并行两级逆变器(VSI)大量用于确保高电能质量和效率。此外,这种解决方案引起了许多相关问题,特别是零序循环电流(ZSCC),这会扭曲系统的性能。本研究提出了一种抑制ZSCC并以快速瞬态响应控制电流的有限集控制模型预测方法。详细介绍了零序循环电流的原因。所提出的电流控制器是通过最小化成本函数并选择最佳矢量来产生控制要求而实现的。最后,仿真结果表明,所提出的控制方案能够确保电能质量,抑制循环电流并保持直流母线电压恒定。

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