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Five-Level Multilevel Power Conditioning System for Grid-Tie Photovoltaic Applications with Novel Model Predictive Control

机译:具有新型模型预测控制的网格连接光伏应用五级多电位电力调节系统

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This paper claims to propose a very high gain grid connected system with its control strategy. The proposed system consists of two stages. The first stage is a very high gain Switched Inductor with Voltage Multiplication Converter (SIVMC) to provide high gain and also it can provides the two dc sources required by the multilevel inverter. The second stage is a five-level multilevel inverter. The construction of the multilevel inverter consists of two voltage sources and six switches. It has five levels: 0, ±V_dc and±2V_dc. The harmonic profile of the proposed system is better than two level h-bridge inverter. The proposed multilevel inverter required two dc voltage sources with equal amplitude. Novel finite-set model predictive control strategy is claimed to be proposed in this paper. The proposed control technique is designed to do the following functions: extract maximum power from the PV module and inject a sinusoidal current into the grid with low Total Harmonic Distortion (THD) and in phase with the grid voltage.
机译:本文要求提出具有其控制策略的非常高的增益网格连接系统。建议的系统由两个阶段组成。第一阶段是具有电压乘法转换器(SIVMC)的非常高的增益开关电感,以提供高增益,并且它还可以提供多级逆变器所需的两个DC源。第二阶段是五层多级逆变器。多级逆变器的构造包括两个电压源和六个开关。它有五个级别:0,±V_DC和±2V_DC。所提出的系统的谐波曲线优于两个电平H桥式逆变器。所提出的多级逆变器需要两个具有相同幅度的直流电压源。声称在本文中提出了新的有限套装模型预测控制策略。所提出的控制技术旨在进行以下功能:从PV模块中提取最大功率,并以低总谐波失真(THD)和具有电网电压的相位将正弦电流注入到电网中。

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